traps.c 20 KB

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  1. /*
  2. * arch/s390/kernel/traps.c
  3. *
  4. * S390 version
  5. * Copyright (C) 1999,2000 IBM Deutschland Entwicklung GmbH, IBM Corporation
  6. * Author(s): Martin Schwidefsky (schwidefsky@de.ibm.com),
  7. * Denis Joseph Barrow (djbarrow@de.ibm.com,barrow_dj@yahoo.com),
  8. *
  9. * Derived from "arch/i386/kernel/traps.c"
  10. * Copyright (C) 1991, 1992 Linus Torvalds
  11. */
  12. /*
  13. * 'Traps.c' handles hardware traps and faults after we have saved some
  14. * state in 'asm.s'.
  15. */
  16. #include <linux/sched.h>
  17. #include <linux/kernel.h>
  18. #include <linux/string.h>
  19. #include <linux/errno.h>
  20. #include <linux/tracehook.h>
  21. #include <linux/timer.h>
  22. #include <linux/mm.h>
  23. #include <linux/smp.h>
  24. #include <linux/init.h>
  25. #include <linux/interrupt.h>
  26. #include <linux/seq_file.h>
  27. #include <linux/delay.h>
  28. #include <linux/module.h>
  29. #include <linux/kdebug.h>
  30. #include <linux/kallsyms.h>
  31. #include <linux/reboot.h>
  32. #include <linux/kprobes.h>
  33. #include <linux/bug.h>
  34. #include <linux/utsname.h>
  35. #include <asm/system.h>
  36. #include <asm/uaccess.h>
  37. #include <asm/io.h>
  38. #include <asm/atomic.h>
  39. #include <asm/mathemu.h>
  40. #include <asm/cpcmd.h>
  41. #include <asm/s390_ext.h>
  42. #include <asm/lowcore.h>
  43. #include <asm/debug.h>
  44. #include "entry.h"
  45. pgm_check_handler_t *pgm_check_table[128];
  46. int show_unhandled_signals;
  47. extern pgm_check_handler_t do_protection_exception;
  48. extern pgm_check_handler_t do_dat_exception;
  49. extern pgm_check_handler_t do_asce_exception;
  50. #define stack_pointer ({ void **sp; asm("la %0,0(15)" : "=&d" (sp)); sp; })
  51. #ifndef CONFIG_64BIT
  52. #define LONG "%08lx "
  53. #define FOURLONG "%08lx %08lx %08lx %08lx\n"
  54. static int kstack_depth_to_print = 12;
  55. #else /* CONFIG_64BIT */
  56. #define LONG "%016lx "
  57. #define FOURLONG "%016lx %016lx %016lx %016lx\n"
  58. static int kstack_depth_to_print = 20;
  59. #endif /* CONFIG_64BIT */
  60. /*
  61. * For show_trace we have tree different stack to consider:
  62. * - the panic stack which is used if the kernel stack has overflown
  63. * - the asynchronous interrupt stack (cpu related)
  64. * - the synchronous kernel stack (process related)
  65. * The stack trace can start at any of the three stack and can potentially
  66. * touch all of them. The order is: panic stack, async stack, sync stack.
  67. */
  68. static unsigned long
  69. __show_trace(unsigned long sp, unsigned long low, unsigned long high)
  70. {
  71. struct stack_frame *sf;
  72. struct pt_regs *regs;
  73. while (1) {
  74. sp = sp & PSW_ADDR_INSN;
  75. if (sp < low || sp > high - sizeof(*sf))
  76. return sp;
  77. sf = (struct stack_frame *) sp;
  78. printk("([<%016lx>] ", sf->gprs[8] & PSW_ADDR_INSN);
  79. print_symbol("%s)\n", sf->gprs[8] & PSW_ADDR_INSN);
  80. /* Follow the backchain. */
  81. while (1) {
  82. low = sp;
  83. sp = sf->back_chain & PSW_ADDR_INSN;
  84. if (!sp)
  85. break;
  86. if (sp <= low || sp > high - sizeof(*sf))
  87. return sp;
  88. sf = (struct stack_frame *) sp;
  89. printk(" [<%016lx>] ", sf->gprs[8] & PSW_ADDR_INSN);
  90. print_symbol("%s\n", sf->gprs[8] & PSW_ADDR_INSN);
  91. }
  92. /* Zero backchain detected, check for interrupt frame. */
  93. sp = (unsigned long) (sf + 1);
  94. if (sp <= low || sp > high - sizeof(*regs))
  95. return sp;
  96. regs = (struct pt_regs *) sp;
  97. printk(" [<%016lx>] ", regs->psw.addr & PSW_ADDR_INSN);
  98. print_symbol("%s\n", regs->psw.addr & PSW_ADDR_INSN);
  99. low = sp;
  100. sp = regs->gprs[15];
  101. }
  102. }
  103. static void show_trace(struct task_struct *task, unsigned long *stack)
  104. {
  105. register unsigned long __r15 asm ("15");
  106. unsigned long sp;
  107. sp = (unsigned long) stack;
  108. if (!sp)
  109. sp = task ? task->thread.ksp : __r15;
  110. printk("Call Trace:\n");
  111. #ifdef CONFIG_CHECK_STACK
  112. sp = __show_trace(sp, S390_lowcore.panic_stack - 4096,
  113. S390_lowcore.panic_stack);
  114. #endif
  115. sp = __show_trace(sp, S390_lowcore.async_stack - ASYNC_SIZE,
  116. S390_lowcore.async_stack);
  117. if (task)
  118. __show_trace(sp, (unsigned long) task_stack_page(task),
  119. (unsigned long) task_stack_page(task) + THREAD_SIZE);
  120. else
  121. __show_trace(sp, S390_lowcore.thread_info,
  122. S390_lowcore.thread_info + THREAD_SIZE);
  123. if (!task)
  124. task = current;
  125. debug_show_held_locks(task);
  126. }
  127. void show_stack(struct task_struct *task, unsigned long *sp)
  128. {
  129. register unsigned long * __r15 asm ("15");
  130. unsigned long *stack;
  131. int i;
  132. if (!sp)
  133. stack = task ? (unsigned long *) task->thread.ksp : __r15;
  134. else
  135. stack = sp;
  136. for (i = 0; i < kstack_depth_to_print; i++) {
  137. if (((addr_t) stack & (THREAD_SIZE-1)) == 0)
  138. break;
  139. if (i && ((i * sizeof (long) % 32) == 0))
  140. printk("\n ");
  141. printk(LONG, *stack++);
  142. }
  143. printk("\n");
  144. show_trace(task, sp);
  145. }
  146. static void show_last_breaking_event(struct pt_regs *regs)
  147. {
  148. #ifdef CONFIG_64BIT
  149. printk("Last Breaking-Event-Address:\n");
  150. printk(" [<%016lx>] ", regs->args[0] & PSW_ADDR_INSN);
  151. print_symbol("%s\n", regs->args[0] & PSW_ADDR_INSN);
  152. #endif
  153. }
  154. /*
  155. * The architecture-independent dump_stack generator
  156. */
  157. void dump_stack(void)
  158. {
  159. printk("CPU: %d %s %s %.*s\n",
  160. task_thread_info(current)->cpu, print_tainted(),
  161. init_utsname()->release,
  162. (int)strcspn(init_utsname()->version, " "),
  163. init_utsname()->version);
  164. printk("Process %s (pid: %d, task: %p, ksp: %p)\n",
  165. current->comm, current->pid, current,
  166. (void *) current->thread.ksp);
  167. show_stack(NULL, NULL);
  168. }
  169. EXPORT_SYMBOL(dump_stack);
  170. static inline int mask_bits(struct pt_regs *regs, unsigned long bits)
  171. {
  172. return (regs->psw.mask & bits) / ((~bits + 1) & bits);
  173. }
  174. void show_registers(struct pt_regs *regs)
  175. {
  176. char *mode;
  177. mode = (regs->psw.mask & PSW_MASK_PSTATE) ? "User" : "Krnl";
  178. printk("%s PSW : %p %p",
  179. mode, (void *) regs->psw.mask,
  180. (void *) regs->psw.addr);
  181. print_symbol(" (%s)\n", regs->psw.addr & PSW_ADDR_INSN);
  182. printk(" R:%x T:%x IO:%x EX:%x Key:%x M:%x W:%x "
  183. "P:%x AS:%x CC:%x PM:%x", mask_bits(regs, PSW_MASK_PER),
  184. mask_bits(regs, PSW_MASK_DAT), mask_bits(regs, PSW_MASK_IO),
  185. mask_bits(regs, PSW_MASK_EXT), mask_bits(regs, PSW_MASK_KEY),
  186. mask_bits(regs, PSW_MASK_MCHECK), mask_bits(regs, PSW_MASK_WAIT),
  187. mask_bits(regs, PSW_MASK_PSTATE), mask_bits(regs, PSW_MASK_ASC),
  188. mask_bits(regs, PSW_MASK_CC), mask_bits(regs, PSW_MASK_PM));
  189. #ifdef CONFIG_64BIT
  190. printk(" EA:%x", mask_bits(regs, PSW_BASE_BITS));
  191. #endif
  192. printk("\n%s GPRS: " FOURLONG, mode,
  193. regs->gprs[0], regs->gprs[1], regs->gprs[2], regs->gprs[3]);
  194. printk(" " FOURLONG,
  195. regs->gprs[4], regs->gprs[5], regs->gprs[6], regs->gprs[7]);
  196. printk(" " FOURLONG,
  197. regs->gprs[8], regs->gprs[9], regs->gprs[10], regs->gprs[11]);
  198. printk(" " FOURLONG,
  199. regs->gprs[12], regs->gprs[13], regs->gprs[14], regs->gprs[15]);
  200. show_code(regs);
  201. }
  202. void show_regs(struct pt_regs *regs)
  203. {
  204. print_modules();
  205. printk("CPU: %d %s %s %.*s\n",
  206. task_thread_info(current)->cpu, print_tainted(),
  207. init_utsname()->release,
  208. (int)strcspn(init_utsname()->version, " "),
  209. init_utsname()->version);
  210. printk("Process %s (pid: %d, task: %p, ksp: %p)\n",
  211. current->comm, current->pid, current,
  212. (void *) current->thread.ksp);
  213. show_registers(regs);
  214. /* Show stack backtrace if pt_regs is from kernel mode */
  215. if (!(regs->psw.mask & PSW_MASK_PSTATE))
  216. show_trace(NULL, (unsigned long *) regs->gprs[15]);
  217. show_last_breaking_event(regs);
  218. }
  219. static DEFINE_SPINLOCK(die_lock);
  220. void die(const char * str, struct pt_regs * regs, long err)
  221. {
  222. static int die_counter;
  223. oops_enter();
  224. debug_stop_all();
  225. console_verbose();
  226. spin_lock_irq(&die_lock);
  227. bust_spinlocks(1);
  228. printk("%s: %04lx [#%d] ", str, err & 0xffff, ++die_counter);
  229. #ifdef CONFIG_PREEMPT
  230. printk("PREEMPT ");
  231. #endif
  232. #ifdef CONFIG_SMP
  233. printk("SMP ");
  234. #endif
  235. #ifdef CONFIG_DEBUG_PAGEALLOC
  236. printk("DEBUG_PAGEALLOC");
  237. #endif
  238. printk("\n");
  239. notify_die(DIE_OOPS, str, regs, err, current->thread.trap_no, SIGSEGV);
  240. show_regs(regs);
  241. bust_spinlocks(0);
  242. add_taint(TAINT_DIE);
  243. spin_unlock_irq(&die_lock);
  244. if (in_interrupt())
  245. panic("Fatal exception in interrupt");
  246. if (panic_on_oops)
  247. panic("Fatal exception: panic_on_oops");
  248. oops_exit();
  249. do_exit(SIGSEGV);
  250. }
  251. static void inline report_user_fault(struct pt_regs *regs, long int_code,
  252. int signr)
  253. {
  254. if ((task_pid_nr(current) > 1) && !show_unhandled_signals)
  255. return;
  256. if (!unhandled_signal(current, signr))
  257. return;
  258. if (!printk_ratelimit())
  259. return;
  260. printk("User process fault: interruption code 0x%lX ", int_code);
  261. print_vma_addr("in ", regs->psw.addr & PSW_ADDR_INSN);
  262. printk("\n");
  263. show_regs(regs);
  264. }
  265. int is_valid_bugaddr(unsigned long addr)
  266. {
  267. return 1;
  268. }
  269. static inline void __kprobes do_trap(long pgm_int_code, int signr, char *str,
  270. struct pt_regs *regs, siginfo_t *info)
  271. {
  272. if (notify_die(DIE_TRAP, str, regs, pgm_int_code,
  273. pgm_int_code, signr) == NOTIFY_STOP)
  274. return;
  275. if (regs->psw.mask & PSW_MASK_PSTATE) {
  276. struct task_struct *tsk = current;
  277. tsk->thread.trap_no = pgm_int_code & 0xffff;
  278. force_sig_info(signr, info, tsk);
  279. report_user_fault(regs, pgm_int_code, signr);
  280. } else {
  281. const struct exception_table_entry *fixup;
  282. fixup = search_exception_tables(regs->psw.addr & PSW_ADDR_INSN);
  283. if (fixup)
  284. regs->psw.addr = fixup->fixup | PSW_ADDR_AMODE;
  285. else {
  286. enum bug_trap_type btt;
  287. btt = report_bug(regs->psw.addr & PSW_ADDR_INSN, regs);
  288. if (btt == BUG_TRAP_TYPE_WARN)
  289. return;
  290. die(str, regs, pgm_int_code);
  291. }
  292. }
  293. }
  294. static inline void __user *get_psw_address(struct pt_regs *regs,
  295. long pgm_int_code)
  296. {
  297. return (void __user *)
  298. ((regs->psw.addr - (pgm_int_code >> 16)) & PSW_ADDR_INSN);
  299. }
  300. void __kprobes do_per_trap(struct pt_regs *regs)
  301. {
  302. if (notify_die(DIE_SSTEP, "sstep", regs, 0, 0, SIGTRAP) == NOTIFY_STOP)
  303. return;
  304. if (tracehook_consider_fatal_signal(current, SIGTRAP))
  305. force_sig(SIGTRAP, current);
  306. }
  307. static void default_trap_handler(struct pt_regs *regs, long pgm_int_code,
  308. unsigned long trans_exc_code)
  309. {
  310. if (regs->psw.mask & PSW_MASK_PSTATE) {
  311. report_user_fault(regs, pgm_int_code, SIGSEGV);
  312. do_exit(SIGSEGV);
  313. } else
  314. die("Unknown program exception", regs, pgm_int_code);
  315. }
  316. #define DO_ERROR_INFO(name, signr, sicode, str) \
  317. static void name(struct pt_regs *regs, long pgm_int_code, \
  318. unsigned long trans_exc_code) \
  319. { \
  320. siginfo_t info; \
  321. info.si_signo = signr; \
  322. info.si_errno = 0; \
  323. info.si_code = sicode; \
  324. info.si_addr = get_psw_address(regs, pgm_int_code); \
  325. do_trap(pgm_int_code, signr, str, regs, &info); \
  326. }
  327. DO_ERROR_INFO(addressing_exception, SIGILL, ILL_ILLADR,
  328. "addressing exception")
  329. DO_ERROR_INFO(execute_exception, SIGILL, ILL_ILLOPN,
  330. "execute exception")
  331. DO_ERROR_INFO(divide_exception, SIGFPE, FPE_INTDIV,
  332. "fixpoint divide exception")
  333. DO_ERROR_INFO(overflow_exception, SIGFPE, FPE_INTOVF,
  334. "fixpoint overflow exception")
  335. DO_ERROR_INFO(hfp_overflow_exception, SIGFPE, FPE_FLTOVF,
  336. "HFP overflow exception")
  337. DO_ERROR_INFO(hfp_underflow_exception, SIGFPE, FPE_FLTUND,
  338. "HFP underflow exception")
  339. DO_ERROR_INFO(hfp_significance_exception, SIGFPE, FPE_FLTRES,
  340. "HFP significance exception")
  341. DO_ERROR_INFO(hfp_divide_exception, SIGFPE, FPE_FLTDIV,
  342. "HFP divide exception")
  343. DO_ERROR_INFO(hfp_sqrt_exception, SIGFPE, FPE_FLTINV,
  344. "HFP square root exception")
  345. DO_ERROR_INFO(operand_exception, SIGILL, ILL_ILLOPN,
  346. "operand exception")
  347. DO_ERROR_INFO(privileged_op, SIGILL, ILL_PRVOPC,
  348. "privileged operation")
  349. DO_ERROR_INFO(special_op_exception, SIGILL, ILL_ILLOPN,
  350. "special operation exception")
  351. DO_ERROR_INFO(translation_exception, SIGILL, ILL_ILLOPN,
  352. "translation exception")
  353. static inline void do_fp_trap(struct pt_regs *regs, void __user *location,
  354. int fpc, long pgm_int_code)
  355. {
  356. siginfo_t si;
  357. si.si_signo = SIGFPE;
  358. si.si_errno = 0;
  359. si.si_addr = location;
  360. si.si_code = 0;
  361. /* FPC[2] is Data Exception Code */
  362. if ((fpc & 0x00000300) == 0) {
  363. /* bits 6 and 7 of DXC are 0 iff IEEE exception */
  364. if (fpc & 0x8000) /* invalid fp operation */
  365. si.si_code = FPE_FLTINV;
  366. else if (fpc & 0x4000) /* div by 0 */
  367. si.si_code = FPE_FLTDIV;
  368. else if (fpc & 0x2000) /* overflow */
  369. si.si_code = FPE_FLTOVF;
  370. else if (fpc & 0x1000) /* underflow */
  371. si.si_code = FPE_FLTUND;
  372. else if (fpc & 0x0800) /* inexact */
  373. si.si_code = FPE_FLTRES;
  374. }
  375. do_trap(pgm_int_code, SIGFPE,
  376. "floating point exception", regs, &si);
  377. }
  378. static void __kprobes illegal_op(struct pt_regs *regs, long pgm_int_code,
  379. unsigned long trans_exc_code)
  380. {
  381. siginfo_t info;
  382. __u8 opcode[6];
  383. __u16 __user *location;
  384. int signal = 0;
  385. location = get_psw_address(regs, pgm_int_code);
  386. if (regs->psw.mask & PSW_MASK_PSTATE) {
  387. if (get_user(*((__u16 *) opcode), (__u16 __user *) location))
  388. return;
  389. if (*((__u16 *) opcode) == S390_BREAKPOINT_U16) {
  390. if (tracehook_consider_fatal_signal(current, SIGTRAP))
  391. force_sig(SIGTRAP, current);
  392. else
  393. signal = SIGILL;
  394. #ifdef CONFIG_MATHEMU
  395. } else if (opcode[0] == 0xb3) {
  396. if (get_user(*((__u16 *) (opcode+2)), location+1))
  397. return;
  398. signal = math_emu_b3(opcode, regs);
  399. } else if (opcode[0] == 0xed) {
  400. if (get_user(*((__u32 *) (opcode+2)),
  401. (__u32 __user *)(location+1)))
  402. return;
  403. signal = math_emu_ed(opcode, regs);
  404. } else if (*((__u16 *) opcode) == 0xb299) {
  405. if (get_user(*((__u16 *) (opcode+2)), location+1))
  406. return;
  407. signal = math_emu_srnm(opcode, regs);
  408. } else if (*((__u16 *) opcode) == 0xb29c) {
  409. if (get_user(*((__u16 *) (opcode+2)), location+1))
  410. return;
  411. signal = math_emu_stfpc(opcode, regs);
  412. } else if (*((__u16 *) opcode) == 0xb29d) {
  413. if (get_user(*((__u16 *) (opcode+2)), location+1))
  414. return;
  415. signal = math_emu_lfpc(opcode, regs);
  416. #endif
  417. } else
  418. signal = SIGILL;
  419. } else {
  420. /*
  421. * If we get an illegal op in kernel mode, send it through the
  422. * kprobes notifier. If kprobes doesn't pick it up, SIGILL
  423. */
  424. if (notify_die(DIE_BPT, "bpt", regs, pgm_int_code,
  425. 3, SIGTRAP) != NOTIFY_STOP)
  426. signal = SIGILL;
  427. }
  428. #ifdef CONFIG_MATHEMU
  429. if (signal == SIGFPE)
  430. do_fp_trap(regs, location,
  431. current->thread.fp_regs.fpc, pgm_int_code);
  432. else if (signal == SIGSEGV) {
  433. info.si_signo = signal;
  434. info.si_errno = 0;
  435. info.si_code = SEGV_MAPERR;
  436. info.si_addr = (void __user *) location;
  437. do_trap(pgm_int_code, signal,
  438. "user address fault", regs, &info);
  439. } else
  440. #endif
  441. if (signal) {
  442. info.si_signo = signal;
  443. info.si_errno = 0;
  444. info.si_code = ILL_ILLOPC;
  445. info.si_addr = (void __user *) location;
  446. do_trap(pgm_int_code, signal,
  447. "illegal operation", regs, &info);
  448. }
  449. }
  450. #ifdef CONFIG_MATHEMU
  451. asmlinkage void specification_exception(struct pt_regs *regs,
  452. long pgm_int_code,
  453. unsigned long trans_exc_code)
  454. {
  455. __u8 opcode[6];
  456. __u16 __user *location = NULL;
  457. int signal = 0;
  458. location = (__u16 __user *) get_psw_address(regs, pgm_int_code);
  459. if (regs->psw.mask & PSW_MASK_PSTATE) {
  460. get_user(*((__u16 *) opcode), location);
  461. switch (opcode[0]) {
  462. case 0x28: /* LDR Rx,Ry */
  463. signal = math_emu_ldr(opcode);
  464. break;
  465. case 0x38: /* LER Rx,Ry */
  466. signal = math_emu_ler(opcode);
  467. break;
  468. case 0x60: /* STD R,D(X,B) */
  469. get_user(*((__u16 *) (opcode+2)), location+1);
  470. signal = math_emu_std(opcode, regs);
  471. break;
  472. case 0x68: /* LD R,D(X,B) */
  473. get_user(*((__u16 *) (opcode+2)), location+1);
  474. signal = math_emu_ld(opcode, regs);
  475. break;
  476. case 0x70: /* STE R,D(X,B) */
  477. get_user(*((__u16 *) (opcode+2)), location+1);
  478. signal = math_emu_ste(opcode, regs);
  479. break;
  480. case 0x78: /* LE R,D(X,B) */
  481. get_user(*((__u16 *) (opcode+2)), location+1);
  482. signal = math_emu_le(opcode, regs);
  483. break;
  484. default:
  485. signal = SIGILL;
  486. break;
  487. }
  488. } else
  489. signal = SIGILL;
  490. if (signal == SIGFPE)
  491. do_fp_trap(regs, location,
  492. current->thread.fp_regs.fpc, pgm_int_code);
  493. else if (signal) {
  494. siginfo_t info;
  495. info.si_signo = signal;
  496. info.si_errno = 0;
  497. info.si_code = ILL_ILLOPN;
  498. info.si_addr = location;
  499. do_trap(pgm_int_code, signal,
  500. "specification exception", regs, &info);
  501. }
  502. }
  503. #else
  504. DO_ERROR_INFO(specification_exception, SIGILL, ILL_ILLOPN,
  505. "specification exception");
  506. #endif
  507. static void data_exception(struct pt_regs *regs, long pgm_int_code,
  508. unsigned long trans_exc_code)
  509. {
  510. __u16 __user *location;
  511. int signal = 0;
  512. location = get_psw_address(regs, pgm_int_code);
  513. if (MACHINE_HAS_IEEE)
  514. asm volatile("stfpc %0" : "=m" (current->thread.fp_regs.fpc));
  515. #ifdef CONFIG_MATHEMU
  516. else if (regs->psw.mask & PSW_MASK_PSTATE) {
  517. __u8 opcode[6];
  518. get_user(*((__u16 *) opcode), location);
  519. switch (opcode[0]) {
  520. case 0x28: /* LDR Rx,Ry */
  521. signal = math_emu_ldr(opcode);
  522. break;
  523. case 0x38: /* LER Rx,Ry */
  524. signal = math_emu_ler(opcode);
  525. break;
  526. case 0x60: /* STD R,D(X,B) */
  527. get_user(*((__u16 *) (opcode+2)), location+1);
  528. signal = math_emu_std(opcode, regs);
  529. break;
  530. case 0x68: /* LD R,D(X,B) */
  531. get_user(*((__u16 *) (opcode+2)), location+1);
  532. signal = math_emu_ld(opcode, regs);
  533. break;
  534. case 0x70: /* STE R,D(X,B) */
  535. get_user(*((__u16 *) (opcode+2)), location+1);
  536. signal = math_emu_ste(opcode, regs);
  537. break;
  538. case 0x78: /* LE R,D(X,B) */
  539. get_user(*((__u16 *) (opcode+2)), location+1);
  540. signal = math_emu_le(opcode, regs);
  541. break;
  542. case 0xb3:
  543. get_user(*((__u16 *) (opcode+2)), location+1);
  544. signal = math_emu_b3(opcode, regs);
  545. break;
  546. case 0xed:
  547. get_user(*((__u32 *) (opcode+2)),
  548. (__u32 __user *)(location+1));
  549. signal = math_emu_ed(opcode, regs);
  550. break;
  551. case 0xb2:
  552. if (opcode[1] == 0x99) {
  553. get_user(*((__u16 *) (opcode+2)), location+1);
  554. signal = math_emu_srnm(opcode, regs);
  555. } else if (opcode[1] == 0x9c) {
  556. get_user(*((__u16 *) (opcode+2)), location+1);
  557. signal = math_emu_stfpc(opcode, regs);
  558. } else if (opcode[1] == 0x9d) {
  559. get_user(*((__u16 *) (opcode+2)), location+1);
  560. signal = math_emu_lfpc(opcode, regs);
  561. } else
  562. signal = SIGILL;
  563. break;
  564. default:
  565. signal = SIGILL;
  566. break;
  567. }
  568. }
  569. #endif
  570. if (current->thread.fp_regs.fpc & FPC_DXC_MASK)
  571. signal = SIGFPE;
  572. else
  573. signal = SIGILL;
  574. if (signal == SIGFPE)
  575. do_fp_trap(regs, location,
  576. current->thread.fp_regs.fpc, pgm_int_code);
  577. else if (signal) {
  578. siginfo_t info;
  579. info.si_signo = signal;
  580. info.si_errno = 0;
  581. info.si_code = ILL_ILLOPN;
  582. info.si_addr = location;
  583. do_trap(pgm_int_code, signal, "data exception", regs, &info);
  584. }
  585. }
  586. static void space_switch_exception(struct pt_regs *regs, long pgm_int_code,
  587. unsigned long trans_exc_code)
  588. {
  589. siginfo_t info;
  590. /* Set user psw back to home space mode. */
  591. if (regs->psw.mask & PSW_MASK_PSTATE)
  592. regs->psw.mask |= PSW_ASC_HOME;
  593. /* Send SIGILL. */
  594. info.si_signo = SIGILL;
  595. info.si_errno = 0;
  596. info.si_code = ILL_PRVOPC;
  597. info.si_addr = get_psw_address(regs, pgm_int_code);
  598. do_trap(pgm_int_code, SIGILL, "space switch event", regs, &info);
  599. }
  600. asmlinkage void __kprobes kernel_stack_overflow(struct pt_regs * regs)
  601. {
  602. bust_spinlocks(1);
  603. printk("Kernel stack overflow.\n");
  604. show_regs(regs);
  605. bust_spinlocks(0);
  606. panic("Corrupt kernel stack, can't continue.");
  607. }
  608. /* init is done in lowcore.S and head.S */
  609. void __init trap_init(void)
  610. {
  611. int i;
  612. for (i = 0; i < 128; i++)
  613. pgm_check_table[i] = &default_trap_handler;
  614. pgm_check_table[1] = &illegal_op;
  615. pgm_check_table[2] = &privileged_op;
  616. pgm_check_table[3] = &execute_exception;
  617. pgm_check_table[4] = &do_protection_exception;
  618. pgm_check_table[5] = &addressing_exception;
  619. pgm_check_table[6] = &specification_exception;
  620. pgm_check_table[7] = &data_exception;
  621. pgm_check_table[8] = &overflow_exception;
  622. pgm_check_table[9] = &divide_exception;
  623. pgm_check_table[0x0A] = &overflow_exception;
  624. pgm_check_table[0x0B] = &divide_exception;
  625. pgm_check_table[0x0C] = &hfp_overflow_exception;
  626. pgm_check_table[0x0D] = &hfp_underflow_exception;
  627. pgm_check_table[0x0E] = &hfp_significance_exception;
  628. pgm_check_table[0x0F] = &hfp_divide_exception;
  629. pgm_check_table[0x10] = &do_dat_exception;
  630. pgm_check_table[0x11] = &do_dat_exception;
  631. pgm_check_table[0x12] = &translation_exception;
  632. pgm_check_table[0x13] = &special_op_exception;
  633. #ifdef CONFIG_64BIT
  634. pgm_check_table[0x38] = &do_asce_exception;
  635. pgm_check_table[0x39] = &do_dat_exception;
  636. pgm_check_table[0x3A] = &do_dat_exception;
  637. pgm_check_table[0x3B] = &do_dat_exception;
  638. #endif /* CONFIG_64BIT */
  639. pgm_check_table[0x15] = &operand_exception;
  640. pgm_check_table[0x1C] = &space_switch_exception;
  641. pgm_check_table[0x1D] = &hfp_sqrt_exception;
  642. /* Enable machine checks early. */
  643. local_mcck_enable();
  644. }