signal.c 14 KB

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  1. /*
  2. * arch/s390/kernel/signal.c
  3. *
  4. * Copyright (C) IBM Corp. 1999,2006
  5. * Author(s): Denis Joseph Barrow (djbarrow@de.ibm.com,barrow_dj@yahoo.com)
  6. *
  7. * Based on Intel version
  8. *
  9. * Copyright (C) 1991, 1992 Linus Torvalds
  10. *
  11. * 1997-11-28 Modified for POSIX.1b signals by Richard Henderson
  12. */
  13. #include <linux/sched.h>
  14. #include <linux/mm.h>
  15. #include <linux/smp.h>
  16. #include <linux/kernel.h>
  17. #include <linux/signal.h>
  18. #include <linux/errno.h>
  19. #include <linux/wait.h>
  20. #include <linux/ptrace.h>
  21. #include <linux/unistd.h>
  22. #include <linux/stddef.h>
  23. #include <linux/tty.h>
  24. #include <linux/personality.h>
  25. #include <linux/binfmts.h>
  26. #include <linux/tracehook.h>
  27. #include <linux/syscalls.h>
  28. #include <linux/compat.h>
  29. #include <asm/ucontext.h>
  30. #include <asm/uaccess.h>
  31. #include <asm/lowcore.h>
  32. #include <asm/switch_to.h>
  33. #include "entry.h"
  34. #define _BLOCKABLE (~(sigmask(SIGKILL) | sigmask(SIGSTOP)))
  35. typedef struct
  36. {
  37. __u8 callee_used_stack[__SIGNAL_FRAMESIZE];
  38. struct sigcontext sc;
  39. _sigregs sregs;
  40. int signo;
  41. __u8 retcode[S390_SYSCALL_SIZE];
  42. } sigframe;
  43. typedef struct
  44. {
  45. __u8 callee_used_stack[__SIGNAL_FRAMESIZE];
  46. __u8 retcode[S390_SYSCALL_SIZE];
  47. struct siginfo info;
  48. struct ucontext uc;
  49. } rt_sigframe;
  50. /*
  51. * Atomically swap in the new signal mask, and wait for a signal.
  52. */
  53. SYSCALL_DEFINE3(sigsuspend, int, history0, int, history1, old_sigset_t, mask)
  54. {
  55. sigset_t blocked;
  56. siginitset(&blocked, mask);
  57. return sigsuspend(&blocked);
  58. }
  59. SYSCALL_DEFINE3(sigaction, int, sig, const struct old_sigaction __user *, act,
  60. struct old_sigaction __user *, oact)
  61. {
  62. struct k_sigaction new_ka, old_ka;
  63. int ret;
  64. if (act) {
  65. old_sigset_t mask;
  66. if (!access_ok(VERIFY_READ, act, sizeof(*act)) ||
  67. __get_user(new_ka.sa.sa_handler, &act->sa_handler) ||
  68. __get_user(new_ka.sa.sa_restorer, &act->sa_restorer) ||
  69. __get_user(new_ka.sa.sa_flags, &act->sa_flags) ||
  70. __get_user(mask, &act->sa_mask))
  71. return -EFAULT;
  72. siginitset(&new_ka.sa.sa_mask, mask);
  73. }
  74. ret = do_sigaction(sig, act ? &new_ka : NULL, oact ? &old_ka : NULL);
  75. if (!ret && oact) {
  76. if (!access_ok(VERIFY_WRITE, oact, sizeof(*oact)) ||
  77. __put_user(old_ka.sa.sa_handler, &oact->sa_handler) ||
  78. __put_user(old_ka.sa.sa_restorer, &oact->sa_restorer) ||
  79. __put_user(old_ka.sa.sa_flags, &oact->sa_flags) ||
  80. __put_user(old_ka.sa.sa_mask.sig[0], &oact->sa_mask))
  81. return -EFAULT;
  82. }
  83. return ret;
  84. }
  85. SYSCALL_DEFINE2(sigaltstack, const stack_t __user *, uss,
  86. stack_t __user *, uoss)
  87. {
  88. struct pt_regs *regs = task_pt_regs(current);
  89. return do_sigaltstack(uss, uoss, regs->gprs[15]);
  90. }
  91. /* Returns non-zero on fault. */
  92. static int save_sigregs(struct pt_regs *regs, _sigregs __user *sregs)
  93. {
  94. _sigregs user_sregs;
  95. save_access_regs(current->thread.acrs);
  96. /* Copy a 'clean' PSW mask to the user to avoid leaking
  97. information about whether PER is currently on. */
  98. user_sregs.regs.psw.mask = psw_user_bits |
  99. (regs->psw.mask & PSW_MASK_USER);
  100. user_sregs.regs.psw.addr = regs->psw.addr;
  101. memcpy(&user_sregs.regs.gprs, &regs->gprs, sizeof(sregs->regs.gprs));
  102. memcpy(&user_sregs.regs.acrs, current->thread.acrs,
  103. sizeof(sregs->regs.acrs));
  104. /*
  105. * We have to store the fp registers to current->thread.fp_regs
  106. * to merge them with the emulated registers.
  107. */
  108. save_fp_regs(&current->thread.fp_regs);
  109. memcpy(&user_sregs.fpregs, &current->thread.fp_regs,
  110. sizeof(s390_fp_regs));
  111. return __copy_to_user(sregs, &user_sregs, sizeof(_sigregs));
  112. }
  113. /* Returns positive number on error */
  114. static int restore_sigregs(struct pt_regs *regs, _sigregs __user *sregs)
  115. {
  116. int err;
  117. _sigregs user_sregs;
  118. /* Alwys make any pending restarted system call return -EINTR */
  119. current_thread_info()->restart_block.fn = do_no_restart_syscall;
  120. err = __copy_from_user(&user_sregs, sregs, sizeof(_sigregs));
  121. if (err)
  122. return err;
  123. /* Use regs->psw.mask instead of psw_user_bits to preserve PER bit. */
  124. regs->psw.mask = (regs->psw.mask & ~PSW_MASK_USER) |
  125. (user_sregs.regs.psw.mask & PSW_MASK_USER);
  126. /* Check for invalid amode */
  127. if (regs->psw.mask & PSW_MASK_EA)
  128. regs->psw.mask |= PSW_MASK_BA;
  129. regs->psw.addr = user_sregs.regs.psw.addr;
  130. memcpy(&regs->gprs, &user_sregs.regs.gprs, sizeof(sregs->regs.gprs));
  131. memcpy(&current->thread.acrs, &user_sregs.regs.acrs,
  132. sizeof(sregs->regs.acrs));
  133. restore_access_regs(current->thread.acrs);
  134. memcpy(&current->thread.fp_regs, &user_sregs.fpregs,
  135. sizeof(s390_fp_regs));
  136. current->thread.fp_regs.fpc &= FPC_VALID_MASK;
  137. restore_fp_regs(&current->thread.fp_regs);
  138. clear_thread_flag(TIF_SYSCALL); /* No longer in a system call */
  139. return 0;
  140. }
  141. SYSCALL_DEFINE0(sigreturn)
  142. {
  143. struct pt_regs *regs = task_pt_regs(current);
  144. sigframe __user *frame = (sigframe __user *)regs->gprs[15];
  145. sigset_t set;
  146. if (!access_ok(VERIFY_READ, frame, sizeof(*frame)))
  147. goto badframe;
  148. if (__copy_from_user(&set.sig, &frame->sc.oldmask, _SIGMASK_COPY_SIZE))
  149. goto badframe;
  150. sigdelsetmask(&set, ~_BLOCKABLE);
  151. set_current_blocked(&set);
  152. if (restore_sigregs(regs, &frame->sregs))
  153. goto badframe;
  154. return regs->gprs[2];
  155. badframe:
  156. force_sig(SIGSEGV, current);
  157. return 0;
  158. }
  159. SYSCALL_DEFINE0(rt_sigreturn)
  160. {
  161. struct pt_regs *regs = task_pt_regs(current);
  162. rt_sigframe __user *frame = (rt_sigframe __user *)regs->gprs[15];
  163. sigset_t set;
  164. if (!access_ok(VERIFY_READ, frame, sizeof(*frame)))
  165. goto badframe;
  166. if (__copy_from_user(&set.sig, &frame->uc.uc_sigmask, sizeof(set)))
  167. goto badframe;
  168. sigdelsetmask(&set, ~_BLOCKABLE);
  169. set_current_blocked(&set);
  170. if (restore_sigregs(regs, &frame->uc.uc_mcontext))
  171. goto badframe;
  172. if (do_sigaltstack(&frame->uc.uc_stack, NULL,
  173. regs->gprs[15]) == -EFAULT)
  174. goto badframe;
  175. return regs->gprs[2];
  176. badframe:
  177. force_sig(SIGSEGV, current);
  178. return 0;
  179. }
  180. /*
  181. * Set up a signal frame.
  182. */
  183. /*
  184. * Determine which stack to use..
  185. */
  186. static inline void __user *
  187. get_sigframe(struct k_sigaction *ka, struct pt_regs * regs, size_t frame_size)
  188. {
  189. unsigned long sp;
  190. /* Default to using normal stack */
  191. sp = regs->gprs[15];
  192. /* Overflow on alternate signal stack gives SIGSEGV. */
  193. if (on_sig_stack(sp) && !on_sig_stack((sp - frame_size) & -8UL))
  194. return (void __user *) -1UL;
  195. /* This is the X/Open sanctioned signal stack switching. */
  196. if (ka->sa.sa_flags & SA_ONSTACK) {
  197. if (! sas_ss_flags(sp))
  198. sp = current->sas_ss_sp + current->sas_ss_size;
  199. }
  200. return (void __user *)((sp - frame_size) & -8ul);
  201. }
  202. static inline int map_signal(int sig)
  203. {
  204. if (current_thread_info()->exec_domain
  205. && current_thread_info()->exec_domain->signal_invmap
  206. && sig < 32)
  207. return current_thread_info()->exec_domain->signal_invmap[sig];
  208. else
  209. return sig;
  210. }
  211. static int setup_frame(int sig, struct k_sigaction *ka,
  212. sigset_t *set, struct pt_regs * regs)
  213. {
  214. sigframe __user *frame;
  215. frame = get_sigframe(ka, regs, sizeof(sigframe));
  216. if (!access_ok(VERIFY_WRITE, frame, sizeof(sigframe)))
  217. goto give_sigsegv;
  218. if (frame == (void __user *) -1UL)
  219. goto give_sigsegv;
  220. if (__copy_to_user(&frame->sc.oldmask, &set->sig, _SIGMASK_COPY_SIZE))
  221. goto give_sigsegv;
  222. if (save_sigregs(regs, &frame->sregs))
  223. goto give_sigsegv;
  224. if (__put_user(&frame->sregs, &frame->sc.sregs))
  225. goto give_sigsegv;
  226. /* Set up to return from userspace. If provided, use a stub
  227. already in userspace. */
  228. if (ka->sa.sa_flags & SA_RESTORER) {
  229. regs->gprs[14] = (unsigned long)
  230. ka->sa.sa_restorer | PSW_ADDR_AMODE;
  231. } else {
  232. regs->gprs[14] = (unsigned long)
  233. frame->retcode | PSW_ADDR_AMODE;
  234. if (__put_user(S390_SYSCALL_OPCODE | __NR_sigreturn,
  235. (u16 __user *)(frame->retcode)))
  236. goto give_sigsegv;
  237. }
  238. /* Set up backchain. */
  239. if (__put_user(regs->gprs[15], (addr_t __user *) frame))
  240. goto give_sigsegv;
  241. /* Set up registers for signal handler */
  242. regs->gprs[15] = (unsigned long) frame;
  243. regs->psw.mask |= PSW_MASK_EA | PSW_MASK_BA; /* 64 bit amode */
  244. regs->psw.addr = (unsigned long) ka->sa.sa_handler | PSW_ADDR_AMODE;
  245. regs->gprs[2] = map_signal(sig);
  246. regs->gprs[3] = (unsigned long) &frame->sc;
  247. /* We forgot to include these in the sigcontext.
  248. To avoid breaking binary compatibility, they are passed as args. */
  249. if (sig == SIGSEGV || sig == SIGBUS || sig == SIGILL ||
  250. sig == SIGTRAP || sig == SIGFPE) {
  251. /* set extra registers only for synchronous signals */
  252. regs->gprs[4] = regs->int_code & 127;
  253. regs->gprs[5] = regs->int_parm_long;
  254. regs->gprs[6] = task_thread_info(current)->last_break;
  255. }
  256. /* Place signal number on stack to allow backtrace from handler. */
  257. if (__put_user(regs->gprs[2], (int __user *) &frame->signo))
  258. goto give_sigsegv;
  259. return 0;
  260. give_sigsegv:
  261. force_sigsegv(sig, current);
  262. return -EFAULT;
  263. }
  264. static int setup_rt_frame(int sig, struct k_sigaction *ka, siginfo_t *info,
  265. sigset_t *set, struct pt_regs * regs)
  266. {
  267. int err = 0;
  268. rt_sigframe __user *frame;
  269. frame = get_sigframe(ka, regs, sizeof(rt_sigframe));
  270. if (!access_ok(VERIFY_WRITE, frame, sizeof(rt_sigframe)))
  271. goto give_sigsegv;
  272. if (frame == (void __user *) -1UL)
  273. goto give_sigsegv;
  274. if (copy_siginfo_to_user(&frame->info, info))
  275. goto give_sigsegv;
  276. /* Create the ucontext. */
  277. err |= __put_user(0, &frame->uc.uc_flags);
  278. err |= __put_user(NULL, &frame->uc.uc_link);
  279. err |= __put_user((void __user *)current->sas_ss_sp, &frame->uc.uc_stack.ss_sp);
  280. err |= __put_user(sas_ss_flags(regs->gprs[15]),
  281. &frame->uc.uc_stack.ss_flags);
  282. err |= __put_user(current->sas_ss_size, &frame->uc.uc_stack.ss_size);
  283. err |= save_sigregs(regs, &frame->uc.uc_mcontext);
  284. err |= __copy_to_user(&frame->uc.uc_sigmask, set, sizeof(*set));
  285. if (err)
  286. goto give_sigsegv;
  287. /* Set up to return from userspace. If provided, use a stub
  288. already in userspace. */
  289. if (ka->sa.sa_flags & SA_RESTORER) {
  290. regs->gprs[14] = (unsigned long)
  291. ka->sa.sa_restorer | PSW_ADDR_AMODE;
  292. } else {
  293. regs->gprs[14] = (unsigned long)
  294. frame->retcode | PSW_ADDR_AMODE;
  295. if (__put_user(S390_SYSCALL_OPCODE | __NR_rt_sigreturn,
  296. (u16 __user *)(frame->retcode)))
  297. goto give_sigsegv;
  298. }
  299. /* Set up backchain. */
  300. if (__put_user(regs->gprs[15], (addr_t __user *) frame))
  301. goto give_sigsegv;
  302. /* Set up registers for signal handler */
  303. regs->gprs[15] = (unsigned long) frame;
  304. regs->psw.mask |= PSW_MASK_EA | PSW_MASK_BA; /* 64 bit amode */
  305. regs->psw.addr = (unsigned long) ka->sa.sa_handler | PSW_ADDR_AMODE;
  306. regs->gprs[2] = map_signal(sig);
  307. regs->gprs[3] = (unsigned long) &frame->info;
  308. regs->gprs[4] = (unsigned long) &frame->uc;
  309. regs->gprs[5] = task_thread_info(current)->last_break;
  310. return 0;
  311. give_sigsegv:
  312. force_sigsegv(sig, current);
  313. return -EFAULT;
  314. }
  315. static int handle_signal(unsigned long sig, struct k_sigaction *ka,
  316. siginfo_t *info, sigset_t *oldset,
  317. struct pt_regs *regs)
  318. {
  319. int ret;
  320. /* Set up the stack frame */
  321. if (ka->sa.sa_flags & SA_SIGINFO)
  322. ret = setup_rt_frame(sig, ka, info, oldset, regs);
  323. else
  324. ret = setup_frame(sig, ka, oldset, regs);
  325. if (ret)
  326. return ret;
  327. block_sigmask(ka, sig);
  328. return 0;
  329. }
  330. /*
  331. * Note that 'init' is a special process: it doesn't get signals it doesn't
  332. * want to handle. Thus you cannot kill init even with a SIGKILL even by
  333. * mistake.
  334. *
  335. * Note that we go through the signals twice: once to check the signals that
  336. * the kernel can handle, and then we build all the user-level signal handling
  337. * stack-frames in one go after that.
  338. */
  339. void do_signal(struct pt_regs *regs)
  340. {
  341. siginfo_t info;
  342. int signr;
  343. struct k_sigaction ka;
  344. sigset_t *oldset;
  345. if (test_thread_flag(TIF_RESTORE_SIGMASK))
  346. oldset = &current->saved_sigmask;
  347. else
  348. oldset = &current->blocked;
  349. /*
  350. * Get signal to deliver. When running under ptrace, at this point
  351. * the debugger may change all our registers, including the system
  352. * call information.
  353. */
  354. current_thread_info()->system_call =
  355. test_thread_flag(TIF_SYSCALL) ? regs->int_code : 0;
  356. signr = get_signal_to_deliver(&info, &ka, regs, NULL);
  357. if (signr > 0) {
  358. /* Whee! Actually deliver the signal. */
  359. if (current_thread_info()->system_call) {
  360. regs->int_code = current_thread_info()->system_call;
  361. /* Check for system call restarting. */
  362. switch (regs->gprs[2]) {
  363. case -ERESTART_RESTARTBLOCK:
  364. case -ERESTARTNOHAND:
  365. regs->gprs[2] = -EINTR;
  366. break;
  367. case -ERESTARTSYS:
  368. if (!(ka.sa.sa_flags & SA_RESTART)) {
  369. regs->gprs[2] = -EINTR;
  370. break;
  371. }
  372. /* fallthrough */
  373. case -ERESTARTNOINTR:
  374. regs->gprs[2] = regs->orig_gpr2;
  375. regs->psw.addr =
  376. __rewind_psw(regs->psw,
  377. regs->int_code >> 16);
  378. break;
  379. }
  380. }
  381. /* No longer in a system call */
  382. clear_thread_flag(TIF_SYSCALL);
  383. if ((is_compat_task() ?
  384. handle_signal32(signr, &ka, &info, oldset, regs) :
  385. handle_signal(signr, &ka, &info, oldset, regs)) == 0) {
  386. /*
  387. * A signal was successfully delivered; the saved
  388. * sigmask will have been stored in the signal frame,
  389. * and will be restored by sigreturn, so we can simply
  390. * clear the TIF_RESTORE_SIGMASK flag.
  391. */
  392. if (test_thread_flag(TIF_RESTORE_SIGMASK))
  393. clear_thread_flag(TIF_RESTORE_SIGMASK);
  394. /*
  395. * Let tracing know that we've done the handler setup.
  396. */
  397. tracehook_signal_handler(signr, &info, &ka, regs,
  398. test_thread_flag(TIF_SINGLE_STEP));
  399. }
  400. return;
  401. }
  402. /* No handlers present - check for system call restart */
  403. clear_thread_flag(TIF_SYSCALL);
  404. if (current_thread_info()->system_call) {
  405. regs->int_code = current_thread_info()->system_call;
  406. switch (regs->gprs[2]) {
  407. case -ERESTART_RESTARTBLOCK:
  408. /* Restart with sys_restart_syscall */
  409. regs->int_code = __NR_restart_syscall;
  410. /* fallthrough */
  411. case -ERESTARTNOHAND:
  412. case -ERESTARTSYS:
  413. case -ERESTARTNOINTR:
  414. /* Restart system call with magic TIF bit. */
  415. regs->gprs[2] = regs->orig_gpr2;
  416. set_thread_flag(TIF_SYSCALL);
  417. break;
  418. }
  419. }
  420. /*
  421. * If there's no signal to deliver, we just put the saved sigmask back.
  422. */
  423. restore_saved_sigmask();
  424. }
  425. void do_notify_resume(struct pt_regs *regs)
  426. {
  427. clear_thread_flag(TIF_NOTIFY_RESUME);
  428. tracehook_notify_resume(regs);
  429. }