signal_32.c 17 KB

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  1. /* linux/arch/sparc/kernel/signal.c
  2. *
  3. * Copyright (C) 1991, 1992 Linus Torvalds
  4. * Copyright (C) 1995 David S. Miller (davem@caip.rutgers.edu)
  5. * Copyright (C) 1996 Miguel de Icaza (miguel@nuclecu.unam.mx)
  6. * Copyright (C) 1997 Eddie C. Dost (ecd@skynet.be)
  7. */
  8. #include <linux/sched.h>
  9. #include <linux/kernel.h>
  10. #include <linux/signal.h>
  11. #include <linux/errno.h>
  12. #include <linux/wait.h>
  13. #include <linux/ptrace.h>
  14. #include <linux/unistd.h>
  15. #include <linux/mm.h>
  16. #include <linux/tty.h>
  17. #include <linux/smp.h>
  18. #include <linux/binfmts.h> /* do_coredum */
  19. #include <linux/bitops.h>
  20. #include <linux/tracehook.h>
  21. #include <asm/uaccess.h>
  22. #include <asm/ptrace.h>
  23. #include <asm/pgalloc.h>
  24. #include <asm/pgtable.h>
  25. #include <asm/cacheflush.h> /* flush_sig_insns */
  26. #include <asm/switch_to.h>
  27. #include "sigutil.h"
  28. #define _BLOCKABLE (~(sigmask(SIGKILL) | sigmask(SIGSTOP)))
  29. extern void fpsave(unsigned long *fpregs, unsigned long *fsr,
  30. void *fpqueue, unsigned long *fpqdepth);
  31. extern void fpload(unsigned long *fpregs, unsigned long *fsr);
  32. struct signal_frame {
  33. struct sparc_stackf ss;
  34. __siginfo32_t info;
  35. __siginfo_fpu_t __user *fpu_save;
  36. unsigned long insns[2] __attribute__ ((aligned (8)));
  37. unsigned int extramask[_NSIG_WORDS - 1];
  38. unsigned int extra_size; /* Should be 0 */
  39. __siginfo_rwin_t __user *rwin_save;
  40. } __attribute__((aligned(8)));
  41. struct rt_signal_frame {
  42. struct sparc_stackf ss;
  43. siginfo_t info;
  44. struct pt_regs regs;
  45. sigset_t mask;
  46. __siginfo_fpu_t __user *fpu_save;
  47. unsigned int insns[2];
  48. stack_t stack;
  49. unsigned int extra_size; /* Should be 0 */
  50. __siginfo_rwin_t __user *rwin_save;
  51. } __attribute__((aligned(8)));
  52. /* Align macros */
  53. #define SF_ALIGNEDSZ (((sizeof(struct signal_frame) + 7) & (~7)))
  54. #define RT_ALIGNEDSZ (((sizeof(struct rt_signal_frame) + 7) & (~7)))
  55. static int _sigpause_common(old_sigset_t set)
  56. {
  57. sigset_t blocked;
  58. siginitset(&blocked, set);
  59. return sigsuspend(&blocked);
  60. }
  61. asmlinkage int sys_sigsuspend(old_sigset_t set)
  62. {
  63. return _sigpause_common(set);
  64. }
  65. asmlinkage void do_sigreturn(struct pt_regs *regs)
  66. {
  67. struct signal_frame __user *sf;
  68. unsigned long up_psr, pc, npc;
  69. sigset_t set;
  70. __siginfo_fpu_t __user *fpu_save;
  71. __siginfo_rwin_t __user *rwin_save;
  72. int err;
  73. /* Always make any pending restarted system calls return -EINTR */
  74. current_thread_info()->restart_block.fn = do_no_restart_syscall;
  75. synchronize_user_stack();
  76. sf = (struct signal_frame __user *) regs->u_regs[UREG_FP];
  77. /* 1. Make sure we are not getting garbage from the user */
  78. if (!access_ok(VERIFY_READ, sf, sizeof(*sf)))
  79. goto segv_and_exit;
  80. if (((unsigned long) sf) & 3)
  81. goto segv_and_exit;
  82. err = __get_user(pc, &sf->info.si_regs.pc);
  83. err |= __get_user(npc, &sf->info.si_regs.npc);
  84. if ((pc | npc) & 3)
  85. goto segv_and_exit;
  86. /* 2. Restore the state */
  87. up_psr = regs->psr;
  88. err |= __copy_from_user(regs, &sf->info.si_regs, sizeof(struct pt_regs));
  89. /* User can only change condition codes and FPU enabling in %psr. */
  90. regs->psr = (up_psr & ~(PSR_ICC | PSR_EF))
  91. | (regs->psr & (PSR_ICC | PSR_EF));
  92. /* Prevent syscall restart. */
  93. pt_regs_clear_syscall(regs);
  94. err |= __get_user(fpu_save, &sf->fpu_save);
  95. if (fpu_save)
  96. err |= restore_fpu_state(regs, fpu_save);
  97. err |= __get_user(rwin_save, &sf->rwin_save);
  98. if (rwin_save)
  99. err |= restore_rwin_state(rwin_save);
  100. /* This is pretty much atomic, no amount locking would prevent
  101. * the races which exist anyways.
  102. */
  103. err |= __get_user(set.sig[0], &sf->info.si_mask);
  104. err |= __copy_from_user(&set.sig[1], &sf->extramask,
  105. (_NSIG_WORDS-1) * sizeof(unsigned int));
  106. if (err)
  107. goto segv_and_exit;
  108. sigdelsetmask(&set, ~_BLOCKABLE);
  109. set_current_blocked(&set);
  110. return;
  111. segv_and_exit:
  112. force_sig(SIGSEGV, current);
  113. }
  114. asmlinkage void do_rt_sigreturn(struct pt_regs *regs)
  115. {
  116. struct rt_signal_frame __user *sf;
  117. unsigned int psr, pc, npc;
  118. __siginfo_fpu_t __user *fpu_save;
  119. __siginfo_rwin_t __user *rwin_save;
  120. mm_segment_t old_fs;
  121. sigset_t set;
  122. stack_t st;
  123. int err;
  124. synchronize_user_stack();
  125. sf = (struct rt_signal_frame __user *) regs->u_regs[UREG_FP];
  126. if (!access_ok(VERIFY_READ, sf, sizeof(*sf)) ||
  127. (((unsigned long) sf) & 0x03))
  128. goto segv;
  129. err = __get_user(pc, &sf->regs.pc);
  130. err |= __get_user(npc, &sf->regs.npc);
  131. err |= ((pc | npc) & 0x03);
  132. err |= __get_user(regs->y, &sf->regs.y);
  133. err |= __get_user(psr, &sf->regs.psr);
  134. err |= __copy_from_user(&regs->u_regs[UREG_G1],
  135. &sf->regs.u_regs[UREG_G1], 15 * sizeof(u32));
  136. regs->psr = (regs->psr & ~PSR_ICC) | (psr & PSR_ICC);
  137. /* Prevent syscall restart. */
  138. pt_regs_clear_syscall(regs);
  139. err |= __get_user(fpu_save, &sf->fpu_save);
  140. if (!err && fpu_save)
  141. err |= restore_fpu_state(regs, fpu_save);
  142. err |= __copy_from_user(&set, &sf->mask, sizeof(sigset_t));
  143. err |= __copy_from_user(&st, &sf->stack, sizeof(stack_t));
  144. if (err)
  145. goto segv;
  146. regs->pc = pc;
  147. regs->npc = npc;
  148. /* It is more difficult to avoid calling this function than to
  149. * call it and ignore errors.
  150. */
  151. old_fs = get_fs();
  152. set_fs(KERNEL_DS);
  153. do_sigaltstack((const stack_t __user *) &st, NULL, (unsigned long)sf);
  154. set_fs(old_fs);
  155. err |= __get_user(rwin_save, &sf->rwin_save);
  156. if (!err && rwin_save) {
  157. if (restore_rwin_state(rwin_save))
  158. goto segv;
  159. }
  160. sigdelsetmask(&set, ~_BLOCKABLE);
  161. set_current_blocked(&set);
  162. return;
  163. segv:
  164. force_sig(SIGSEGV, current);
  165. }
  166. /* Checks if the fp is valid */
  167. static inline int invalid_frame_pointer(void __user *fp, int fplen)
  168. {
  169. if ((((unsigned long) fp) & 7) || !__access_ok((unsigned long)fp, fplen))
  170. return 1;
  171. return 0;
  172. }
  173. static inline void __user *get_sigframe(struct sigaction *sa, struct pt_regs *regs, unsigned long framesize)
  174. {
  175. unsigned long sp = regs->u_regs[UREG_FP];
  176. /*
  177. * If we are on the alternate signal stack and would overflow it, don't.
  178. * Return an always-bogus address instead so we will die with SIGSEGV.
  179. */
  180. if (on_sig_stack(sp) && !likely(on_sig_stack(sp - framesize)))
  181. return (void __user *) -1L;
  182. /* This is the X/Open sanctioned signal stack switching. */
  183. if (sa->sa_flags & SA_ONSTACK) {
  184. if (sas_ss_flags(sp) == 0)
  185. sp = current->sas_ss_sp + current->sas_ss_size;
  186. }
  187. sp -= framesize;
  188. /* Always align the stack frame. This handles two cases. First,
  189. * sigaltstack need not be mindful of platform specific stack
  190. * alignment. Second, if we took this signal because the stack
  191. * is not aligned properly, we'd like to take the signal cleanly
  192. * and report that.
  193. */
  194. sp &= ~15UL;
  195. return (void __user *) sp;
  196. }
  197. static int setup_frame(struct k_sigaction *ka, struct pt_regs *regs,
  198. int signo, sigset_t *oldset)
  199. {
  200. struct signal_frame __user *sf;
  201. int sigframe_size, err, wsaved;
  202. void __user *tail;
  203. /* 1. Make sure everything is clean */
  204. synchronize_user_stack();
  205. wsaved = current_thread_info()->w_saved;
  206. sigframe_size = sizeof(*sf);
  207. if (used_math())
  208. sigframe_size += sizeof(__siginfo_fpu_t);
  209. if (wsaved)
  210. sigframe_size += sizeof(__siginfo_rwin_t);
  211. sf = (struct signal_frame __user *)
  212. get_sigframe(&ka->sa, regs, sigframe_size);
  213. if (invalid_frame_pointer(sf, sigframe_size))
  214. goto sigill_and_return;
  215. tail = sf + 1;
  216. /* 2. Save the current process state */
  217. err = __copy_to_user(&sf->info.si_regs, regs, sizeof(struct pt_regs));
  218. err |= __put_user(0, &sf->extra_size);
  219. if (used_math()) {
  220. __siginfo_fpu_t __user *fp = tail;
  221. tail += sizeof(*fp);
  222. err |= save_fpu_state(regs, fp);
  223. err |= __put_user(fp, &sf->fpu_save);
  224. } else {
  225. err |= __put_user(0, &sf->fpu_save);
  226. }
  227. if (wsaved) {
  228. __siginfo_rwin_t __user *rwp = tail;
  229. tail += sizeof(*rwp);
  230. err |= save_rwin_state(wsaved, rwp);
  231. err |= __put_user(rwp, &sf->rwin_save);
  232. } else {
  233. err |= __put_user(0, &sf->rwin_save);
  234. }
  235. err |= __put_user(oldset->sig[0], &sf->info.si_mask);
  236. err |= __copy_to_user(sf->extramask, &oldset->sig[1],
  237. (_NSIG_WORDS - 1) * sizeof(unsigned int));
  238. if (!wsaved) {
  239. err |= __copy_to_user(sf, (char *) regs->u_regs[UREG_FP],
  240. sizeof(struct reg_window32));
  241. } else {
  242. struct reg_window32 *rp;
  243. rp = &current_thread_info()->reg_window[wsaved - 1];
  244. err |= __copy_to_user(sf, rp, sizeof(struct reg_window32));
  245. }
  246. if (err)
  247. goto sigsegv;
  248. /* 3. signal handler back-trampoline and parameters */
  249. regs->u_regs[UREG_FP] = (unsigned long) sf;
  250. regs->u_regs[UREG_I0] = signo;
  251. regs->u_regs[UREG_I1] = (unsigned long) &sf->info;
  252. regs->u_regs[UREG_I2] = (unsigned long) &sf->info;
  253. /* 4. signal handler */
  254. regs->pc = (unsigned long) ka->sa.sa_handler;
  255. regs->npc = (regs->pc + 4);
  256. /* 5. return to kernel instructions */
  257. if (ka->ka_restorer)
  258. regs->u_regs[UREG_I7] = (unsigned long)ka->ka_restorer;
  259. else {
  260. regs->u_regs[UREG_I7] = (unsigned long)(&(sf->insns[0]) - 2);
  261. /* mov __NR_sigreturn, %g1 */
  262. err |= __put_user(0x821020d8, &sf->insns[0]);
  263. /* t 0x10 */
  264. err |= __put_user(0x91d02010, &sf->insns[1]);
  265. if (err)
  266. goto sigsegv;
  267. /* Flush instruction space. */
  268. flush_sig_insns(current->mm, (unsigned long) &(sf->insns[0]));
  269. }
  270. return 0;
  271. sigill_and_return:
  272. do_exit(SIGILL);
  273. return -EINVAL;
  274. sigsegv:
  275. force_sigsegv(signo, current);
  276. return -EFAULT;
  277. }
  278. static int setup_rt_frame(struct k_sigaction *ka, struct pt_regs *regs,
  279. int signo, sigset_t *oldset, siginfo_t *info)
  280. {
  281. struct rt_signal_frame __user *sf;
  282. int sigframe_size, wsaved;
  283. void __user *tail;
  284. unsigned int psr;
  285. int err;
  286. synchronize_user_stack();
  287. wsaved = current_thread_info()->w_saved;
  288. sigframe_size = sizeof(*sf);
  289. if (used_math())
  290. sigframe_size += sizeof(__siginfo_fpu_t);
  291. if (wsaved)
  292. sigframe_size += sizeof(__siginfo_rwin_t);
  293. sf = (struct rt_signal_frame __user *)
  294. get_sigframe(&ka->sa, regs, sigframe_size);
  295. if (invalid_frame_pointer(sf, sigframe_size))
  296. goto sigill;
  297. tail = sf + 1;
  298. err = __put_user(regs->pc, &sf->regs.pc);
  299. err |= __put_user(regs->npc, &sf->regs.npc);
  300. err |= __put_user(regs->y, &sf->regs.y);
  301. psr = regs->psr;
  302. if (used_math())
  303. psr |= PSR_EF;
  304. err |= __put_user(psr, &sf->regs.psr);
  305. err |= __copy_to_user(&sf->regs.u_regs, regs->u_regs, sizeof(regs->u_regs));
  306. err |= __put_user(0, &sf->extra_size);
  307. if (psr & PSR_EF) {
  308. __siginfo_fpu_t *fp = tail;
  309. tail += sizeof(*fp);
  310. err |= save_fpu_state(regs, fp);
  311. err |= __put_user(fp, &sf->fpu_save);
  312. } else {
  313. err |= __put_user(0, &sf->fpu_save);
  314. }
  315. if (wsaved) {
  316. __siginfo_rwin_t *rwp = tail;
  317. tail += sizeof(*rwp);
  318. err |= save_rwin_state(wsaved, rwp);
  319. err |= __put_user(rwp, &sf->rwin_save);
  320. } else {
  321. err |= __put_user(0, &sf->rwin_save);
  322. }
  323. err |= __copy_to_user(&sf->mask, &oldset->sig[0], sizeof(sigset_t));
  324. /* Setup sigaltstack */
  325. err |= __put_user(current->sas_ss_sp, &sf->stack.ss_sp);
  326. err |= __put_user(sas_ss_flags(regs->u_regs[UREG_FP]), &sf->stack.ss_flags);
  327. err |= __put_user(current->sas_ss_size, &sf->stack.ss_size);
  328. if (!wsaved) {
  329. err |= __copy_to_user(sf, (char *) regs->u_regs[UREG_FP],
  330. sizeof(struct reg_window32));
  331. } else {
  332. struct reg_window32 *rp;
  333. rp = &current_thread_info()->reg_window[wsaved - 1];
  334. err |= __copy_to_user(sf, rp, sizeof(struct reg_window32));
  335. }
  336. err |= copy_siginfo_to_user(&sf->info, info);
  337. if (err)
  338. goto sigsegv;
  339. regs->u_regs[UREG_FP] = (unsigned long) sf;
  340. regs->u_regs[UREG_I0] = signo;
  341. regs->u_regs[UREG_I1] = (unsigned long) &sf->info;
  342. regs->u_regs[UREG_I2] = (unsigned long) &sf->regs;
  343. regs->pc = (unsigned long) ka->sa.sa_handler;
  344. regs->npc = (regs->pc + 4);
  345. if (ka->ka_restorer)
  346. regs->u_regs[UREG_I7] = (unsigned long)ka->ka_restorer;
  347. else {
  348. regs->u_regs[UREG_I7] = (unsigned long)(&(sf->insns[0]) - 2);
  349. /* mov __NR_sigreturn, %g1 */
  350. err |= __put_user(0x821020d8, &sf->insns[0]);
  351. /* t 0x10 */
  352. err |= __put_user(0x91d02010, &sf->insns[1]);
  353. if (err)
  354. goto sigsegv;
  355. /* Flush instruction space. */
  356. flush_sig_insns(current->mm, (unsigned long) &(sf->insns[0]));
  357. }
  358. return 0;
  359. sigill:
  360. do_exit(SIGILL);
  361. return -EINVAL;
  362. sigsegv:
  363. force_sigsegv(signo, current);
  364. return -EFAULT;
  365. }
  366. static inline int
  367. handle_signal(unsigned long signr, struct k_sigaction *ka,
  368. siginfo_t *info, sigset_t *oldset, struct pt_regs *regs)
  369. {
  370. int err;
  371. if (ka->sa.sa_flags & SA_SIGINFO)
  372. err = setup_rt_frame(ka, regs, signr, oldset, info);
  373. else
  374. err = setup_frame(ka, regs, signr, oldset);
  375. if (err)
  376. return err;
  377. block_sigmask(ka, signr);
  378. tracehook_signal_handler(signr, info, ka, regs, 0);
  379. return 0;
  380. }
  381. static inline void syscall_restart(unsigned long orig_i0, struct pt_regs *regs,
  382. struct sigaction *sa)
  383. {
  384. switch(regs->u_regs[UREG_I0]) {
  385. case ERESTART_RESTARTBLOCK:
  386. case ERESTARTNOHAND:
  387. no_system_call_restart:
  388. regs->u_regs[UREG_I0] = EINTR;
  389. regs->psr |= PSR_C;
  390. break;
  391. case ERESTARTSYS:
  392. if (!(sa->sa_flags & SA_RESTART))
  393. goto no_system_call_restart;
  394. /* fallthrough */
  395. case ERESTARTNOINTR:
  396. regs->u_regs[UREG_I0] = orig_i0;
  397. regs->pc -= 4;
  398. regs->npc -= 4;
  399. }
  400. }
  401. /* Note that 'init' is a special process: it doesn't get signals it doesn't
  402. * want to handle. Thus you cannot kill init even with a SIGKILL even by
  403. * mistake.
  404. */
  405. static void do_signal(struct pt_regs *regs, unsigned long orig_i0)
  406. {
  407. struct k_sigaction ka;
  408. int restart_syscall;
  409. sigset_t *oldset;
  410. siginfo_t info;
  411. int signr;
  412. /* It's a lot of work and synchronization to add a new ptrace
  413. * register for GDB to save and restore in order to get
  414. * orig_i0 correct for syscall restarts when debugging.
  415. *
  416. * Although it should be the case that most of the global
  417. * registers are volatile across a system call, glibc already
  418. * depends upon that fact that we preserve them. So we can't
  419. * just use any global register to save away the orig_i0 value.
  420. *
  421. * In particular %g2, %g3, %g4, and %g5 are all assumed to be
  422. * preserved across a system call trap by various pieces of
  423. * code in glibc.
  424. *
  425. * %g7 is used as the "thread register". %g6 is not used in
  426. * any fixed manner. %g6 is used as a scratch register and
  427. * a compiler temporary, but it's value is never used across
  428. * a system call. Therefore %g6 is usable for orig_i0 storage.
  429. */
  430. if (pt_regs_is_syscall(regs) && (regs->psr & PSR_C))
  431. regs->u_regs[UREG_G6] = orig_i0;
  432. if (test_thread_flag(TIF_RESTORE_SIGMASK))
  433. oldset = &current->saved_sigmask;
  434. else
  435. oldset = &current->blocked;
  436. signr = get_signal_to_deliver(&info, &ka, regs, NULL);
  437. /* If the debugger messes with the program counter, it clears
  438. * the software "in syscall" bit, directing us to not perform
  439. * a syscall restart.
  440. */
  441. restart_syscall = 0;
  442. if (pt_regs_is_syscall(regs) && (regs->psr & PSR_C)) {
  443. restart_syscall = 1;
  444. orig_i0 = regs->u_regs[UREG_G6];
  445. }
  446. if (signr > 0) {
  447. if (restart_syscall)
  448. syscall_restart(orig_i0, regs, &ka.sa);
  449. if (handle_signal(signr, &ka, &info, oldset, regs) == 0) {
  450. /* a signal was successfully delivered; the saved
  451. * sigmask will have been stored in the signal frame,
  452. * and will be restored by sigreturn, so we can simply
  453. * clear the TIF_RESTORE_SIGMASK flag.
  454. */
  455. if (test_thread_flag(TIF_RESTORE_SIGMASK))
  456. clear_thread_flag(TIF_RESTORE_SIGMASK);
  457. }
  458. return;
  459. }
  460. if (restart_syscall &&
  461. (regs->u_regs[UREG_I0] == ERESTARTNOHAND ||
  462. regs->u_regs[UREG_I0] == ERESTARTSYS ||
  463. regs->u_regs[UREG_I0] == ERESTARTNOINTR)) {
  464. /* replay the system call when we are done */
  465. regs->u_regs[UREG_I0] = orig_i0;
  466. regs->pc -= 4;
  467. regs->npc -= 4;
  468. pt_regs_clear_syscall(regs);
  469. }
  470. if (restart_syscall &&
  471. regs->u_regs[UREG_I0] == ERESTART_RESTARTBLOCK) {
  472. regs->u_regs[UREG_G1] = __NR_restart_syscall;
  473. regs->pc -= 4;
  474. regs->npc -= 4;
  475. pt_regs_clear_syscall(regs);
  476. }
  477. /* if there's no signal to deliver, we just put the saved sigmask
  478. * back
  479. */
  480. if (test_thread_flag(TIF_RESTORE_SIGMASK)) {
  481. clear_thread_flag(TIF_RESTORE_SIGMASK);
  482. set_current_blocked(&current->saved_sigmask);
  483. }
  484. }
  485. void do_notify_resume(struct pt_regs *regs, unsigned long orig_i0,
  486. unsigned long thread_info_flags)
  487. {
  488. if (thread_info_flags & (_TIF_SIGPENDING | _TIF_RESTORE_SIGMASK))
  489. do_signal(regs, orig_i0);
  490. if (thread_info_flags & _TIF_NOTIFY_RESUME) {
  491. clear_thread_flag(TIF_NOTIFY_RESUME);
  492. tracehook_notify_resume(regs);
  493. if (current->replacement_session_keyring)
  494. key_replace_session_keyring();
  495. }
  496. }
  497. asmlinkage int
  498. do_sys_sigstack(struct sigstack __user *ssptr, struct sigstack __user *ossptr,
  499. unsigned long sp)
  500. {
  501. int ret = -EFAULT;
  502. /* First see if old state is wanted. */
  503. if (ossptr) {
  504. if (put_user(current->sas_ss_sp + current->sas_ss_size,
  505. &ossptr->the_stack) ||
  506. __put_user(on_sig_stack(sp), &ossptr->cur_status))
  507. goto out;
  508. }
  509. /* Now see if we want to update the new state. */
  510. if (ssptr) {
  511. char *ss_sp;
  512. if (get_user(ss_sp, &ssptr->the_stack))
  513. goto out;
  514. /* If the current stack was set with sigaltstack, don't
  515. swap stacks while we are on it. */
  516. ret = -EPERM;
  517. if (current->sas_ss_sp && on_sig_stack(sp))
  518. goto out;
  519. /* Since we don't know the extent of the stack, and we don't
  520. track onstack-ness, but rather calculate it, we must
  521. presume a size. Ho hum this interface is lossy. */
  522. current->sas_ss_sp = (unsigned long)ss_sp - SIGSTKSZ;
  523. current->sas_ss_size = SIGSTKSZ;
  524. }
  525. ret = 0;
  526. out:
  527. return ret;
  528. }