signal.h 11 KB

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  1. #ifndef _LINUX_SIGNAL_H
  2. #define _LINUX_SIGNAL_H
  3. #include <asm/signal.h>
  4. #include <asm/siginfo.h>
  5. #ifdef __KERNEL__
  6. #include <linux/list.h>
  7. /*
  8. * Real Time signals may be queued.
  9. */
  10. struct sigqueue {
  11. struct list_head list;
  12. int flags;
  13. siginfo_t info;
  14. struct user_struct *user;
  15. };
  16. /* flags values. */
  17. #define SIGQUEUE_PREALLOC 1
  18. struct sigpending {
  19. struct list_head list;
  20. sigset_t signal;
  21. };
  22. /*
  23. * Define some primitives to manipulate sigset_t.
  24. */
  25. #ifndef __HAVE_ARCH_SIG_BITOPS
  26. #include <linux/bitops.h>
  27. /* We don't use <linux/bitops.h> for these because there is no need to
  28. be atomic. */
  29. static inline void sigaddset(sigset_t *set, int _sig)
  30. {
  31. unsigned long sig = _sig - 1;
  32. if (_NSIG_WORDS == 1)
  33. set->sig[0] |= 1UL << sig;
  34. else
  35. set->sig[sig / _NSIG_BPW] |= 1UL << (sig % _NSIG_BPW);
  36. }
  37. static inline void sigdelset(sigset_t *set, int _sig)
  38. {
  39. unsigned long sig = _sig - 1;
  40. if (_NSIG_WORDS == 1)
  41. set->sig[0] &= ~(1UL << sig);
  42. else
  43. set->sig[sig / _NSIG_BPW] &= ~(1UL << (sig % _NSIG_BPW));
  44. }
  45. static inline int sigismember(sigset_t *set, int _sig)
  46. {
  47. unsigned long sig = _sig - 1;
  48. if (_NSIG_WORDS == 1)
  49. return 1 & (set->sig[0] >> sig);
  50. else
  51. return 1 & (set->sig[sig / _NSIG_BPW] >> (sig % _NSIG_BPW));
  52. }
  53. static inline int sigfindinword(unsigned long word)
  54. {
  55. return ffz(~word);
  56. }
  57. #endif /* __HAVE_ARCH_SIG_BITOPS */
  58. static inline int sigisemptyset(sigset_t *set)
  59. {
  60. extern void _NSIG_WORDS_is_unsupported_size(void);
  61. switch (_NSIG_WORDS) {
  62. case 4:
  63. return (set->sig[3] | set->sig[2] |
  64. set->sig[1] | set->sig[0]) == 0;
  65. case 2:
  66. return (set->sig[1] | set->sig[0]) == 0;
  67. case 1:
  68. return set->sig[0] == 0;
  69. default:
  70. _NSIG_WORDS_is_unsupported_size();
  71. return 0;
  72. }
  73. }
  74. #define sigmask(sig) (1UL << ((sig) - 1))
  75. #ifndef __HAVE_ARCH_SIG_SETOPS
  76. #include <linux/string.h>
  77. #define _SIG_SET_BINOP(name, op) \
  78. static inline void name(sigset_t *r, const sigset_t *a, const sigset_t *b) \
  79. { \
  80. extern void _NSIG_WORDS_is_unsupported_size(void); \
  81. unsigned long a0, a1, a2, a3, b0, b1, b2, b3; \
  82. \
  83. switch (_NSIG_WORDS) { \
  84. case 4: \
  85. a3 = a->sig[3]; a2 = a->sig[2]; \
  86. b3 = b->sig[3]; b2 = b->sig[2]; \
  87. r->sig[3] = op(a3, b3); \
  88. r->sig[2] = op(a2, b2); \
  89. case 2: \
  90. a1 = a->sig[1]; b1 = b->sig[1]; \
  91. r->sig[1] = op(a1, b1); \
  92. case 1: \
  93. a0 = a->sig[0]; b0 = b->sig[0]; \
  94. r->sig[0] = op(a0, b0); \
  95. break; \
  96. default: \
  97. _NSIG_WORDS_is_unsupported_size(); \
  98. } \
  99. }
  100. #define _sig_or(x,y) ((x) | (y))
  101. _SIG_SET_BINOP(sigorsets, _sig_or)
  102. #define _sig_and(x,y) ((x) & (y))
  103. _SIG_SET_BINOP(sigandsets, _sig_and)
  104. #define _sig_nand(x,y) ((x) & ~(y))
  105. _SIG_SET_BINOP(signandsets, _sig_nand)
  106. #undef _SIG_SET_BINOP
  107. #undef _sig_or
  108. #undef _sig_and
  109. #undef _sig_nand
  110. #define _SIG_SET_OP(name, op) \
  111. static inline void name(sigset_t *set) \
  112. { \
  113. extern void _NSIG_WORDS_is_unsupported_size(void); \
  114. \
  115. switch (_NSIG_WORDS) { \
  116. case 4: set->sig[3] = op(set->sig[3]); \
  117. set->sig[2] = op(set->sig[2]); \
  118. case 2: set->sig[1] = op(set->sig[1]); \
  119. case 1: set->sig[0] = op(set->sig[0]); \
  120. break; \
  121. default: \
  122. _NSIG_WORDS_is_unsupported_size(); \
  123. } \
  124. }
  125. #define _sig_not(x) (~(x))
  126. _SIG_SET_OP(signotset, _sig_not)
  127. #undef _SIG_SET_OP
  128. #undef _sig_not
  129. static inline void sigemptyset(sigset_t *set)
  130. {
  131. switch (_NSIG_WORDS) {
  132. default:
  133. memset(set, 0, sizeof(sigset_t));
  134. break;
  135. case 2: set->sig[1] = 0;
  136. case 1: set->sig[0] = 0;
  137. break;
  138. }
  139. }
  140. static inline void sigfillset(sigset_t *set)
  141. {
  142. switch (_NSIG_WORDS) {
  143. default:
  144. memset(set, -1, sizeof(sigset_t));
  145. break;
  146. case 2: set->sig[1] = -1;
  147. case 1: set->sig[0] = -1;
  148. break;
  149. }
  150. }
  151. /* Some extensions for manipulating the low 32 signals in particular. */
  152. static inline void sigaddsetmask(sigset_t *set, unsigned long mask)
  153. {
  154. set->sig[0] |= mask;
  155. }
  156. static inline void sigdelsetmask(sigset_t *set, unsigned long mask)
  157. {
  158. set->sig[0] &= ~mask;
  159. }
  160. static inline int sigtestsetmask(sigset_t *set, unsigned long mask)
  161. {
  162. return (set->sig[0] & mask) != 0;
  163. }
  164. static inline void siginitset(sigset_t *set, unsigned long mask)
  165. {
  166. set->sig[0] = mask;
  167. switch (_NSIG_WORDS) {
  168. default:
  169. memset(&set->sig[1], 0, sizeof(long)*(_NSIG_WORDS-1));
  170. break;
  171. case 2: set->sig[1] = 0;
  172. case 1: ;
  173. }
  174. }
  175. static inline void siginitsetinv(sigset_t *set, unsigned long mask)
  176. {
  177. set->sig[0] = ~mask;
  178. switch (_NSIG_WORDS) {
  179. default:
  180. memset(&set->sig[1], -1, sizeof(long)*(_NSIG_WORDS-1));
  181. break;
  182. case 2: set->sig[1] = -1;
  183. case 1: ;
  184. }
  185. }
  186. #endif /* __HAVE_ARCH_SIG_SETOPS */
  187. static inline void init_sigpending(struct sigpending *sig)
  188. {
  189. sigemptyset(&sig->signal);
  190. INIT_LIST_HEAD(&sig->list);
  191. }
  192. extern void flush_sigqueue(struct sigpending *queue);
  193. /* Test if 'sig' is valid signal. Use this instead of testing _NSIG directly */
  194. static inline int valid_signal(unsigned long sig)
  195. {
  196. return sig <= _NSIG ? 1 : 0;
  197. }
  198. extern int next_signal(struct sigpending *pending, sigset_t *mask);
  199. extern int group_send_sig_info(int sig, struct siginfo *info, struct task_struct *p);
  200. extern int __group_send_sig_info(int, struct siginfo *, struct task_struct *);
  201. extern long do_sigpending(void __user *, unsigned long);
  202. extern int sigprocmask(int, sigset_t *, sigset_t *);
  203. extern int show_unhandled_signals;
  204. struct pt_regs;
  205. extern int get_signal_to_deliver(siginfo_t *info, struct k_sigaction *return_ka, struct pt_regs *regs, void *cookie);
  206. extern struct kmem_cache *sighand_cachep;
  207. int unhandled_signal(struct task_struct *tsk, int sig);
  208. /*
  209. * In POSIX a signal is sent either to a specific thread (Linux task)
  210. * or to the process as a whole (Linux thread group). How the signal
  211. * is sent determines whether it's to one thread or the whole group,
  212. * which determines which signal mask(s) are involved in blocking it
  213. * from being delivered until later. When the signal is delivered,
  214. * either it's caught or ignored by a user handler or it has a default
  215. * effect that applies to the whole thread group (POSIX process).
  216. *
  217. * The possible effects an unblocked signal set to SIG_DFL can have are:
  218. * ignore - Nothing Happens
  219. * terminate - kill the process, i.e. all threads in the group,
  220. * similar to exit_group. The group leader (only) reports
  221. * WIFSIGNALED status to its parent.
  222. * coredump - write a core dump file describing all threads using
  223. * the same mm and then kill all those threads
  224. * stop - stop all the threads in the group, i.e. TASK_STOPPED state
  225. *
  226. * SIGKILL and SIGSTOP cannot be caught, blocked, or ignored.
  227. * Other signals when not blocked and set to SIG_DFL behaves as follows.
  228. * The job control signals also have other special effects.
  229. *
  230. * +--------------------+------------------+
  231. * | POSIX signal | default action |
  232. * +--------------------+------------------+
  233. * | SIGHUP | terminate |
  234. * | SIGINT | terminate |
  235. * | SIGQUIT | coredump |
  236. * | SIGILL | coredump |
  237. * | SIGTRAP | coredump |
  238. * | SIGABRT/SIGIOT | coredump |
  239. * | SIGBUS | coredump |
  240. * | SIGFPE | coredump |
  241. * | SIGKILL | terminate(+) |
  242. * | SIGUSR1 | terminate |
  243. * | SIGSEGV | coredump |
  244. * | SIGUSR2 | terminate |
  245. * | SIGPIPE | terminate |
  246. * | SIGALRM | terminate |
  247. * | SIGTERM | terminate |
  248. * | SIGCHLD | ignore |
  249. * | SIGCONT | ignore(*) |
  250. * | SIGSTOP | stop(*)(+) |
  251. * | SIGTSTP | stop(*) |
  252. * | SIGTTIN | stop(*) |
  253. * | SIGTTOU | stop(*) |
  254. * | SIGURG | ignore |
  255. * | SIGXCPU | coredump |
  256. * | SIGXFSZ | coredump |
  257. * | SIGVTALRM | terminate |
  258. * | SIGPROF | terminate |
  259. * | SIGPOLL/SIGIO | terminate |
  260. * | SIGSYS/SIGUNUSED | coredump |
  261. * | SIGSTKFLT | terminate |
  262. * | SIGWINCH | ignore |
  263. * | SIGPWR | terminate |
  264. * | SIGRTMIN-SIGRTMAX | terminate |
  265. * +--------------------+------------------+
  266. * | non-POSIX signal | default action |
  267. * +--------------------+------------------+
  268. * | SIGEMT | coredump |
  269. * +--------------------+------------------+
  270. *
  271. * (+) For SIGKILL and SIGSTOP the action is "always", not just "default".
  272. * (*) Special job control effects:
  273. * When SIGCONT is sent, it resumes the process (all threads in the group)
  274. * from TASK_STOPPED state and also clears any pending/queued stop signals
  275. * (any of those marked with "stop(*)"). This happens regardless of blocking,
  276. * catching, or ignoring SIGCONT. When any stop signal is sent, it clears
  277. * any pending/queued SIGCONT signals; this happens regardless of blocking,
  278. * catching, or ignored the stop signal, though (except for SIGSTOP) the
  279. * default action of stopping the process may happen later or never.
  280. */
  281. #ifdef SIGEMT
  282. #define SIGEMT_MASK rt_sigmask(SIGEMT)
  283. #else
  284. #define SIGEMT_MASK 0
  285. #endif
  286. #if SIGRTMIN > BITS_PER_LONG
  287. #define rt_sigmask(sig) (1ULL << ((sig)-1))
  288. #else
  289. #define rt_sigmask(sig) sigmask(sig)
  290. #endif
  291. #define siginmask(sig, mask) (rt_sigmask(sig) & (mask))
  292. #define SIG_KERNEL_ONLY_MASK (\
  293. rt_sigmask(SIGKILL) | rt_sigmask(SIGSTOP))
  294. #define SIG_KERNEL_STOP_MASK (\
  295. rt_sigmask(SIGSTOP) | rt_sigmask(SIGTSTP) | \
  296. rt_sigmask(SIGTTIN) | rt_sigmask(SIGTTOU) )
  297. #define SIG_KERNEL_COREDUMP_MASK (\
  298. rt_sigmask(SIGQUIT) | rt_sigmask(SIGILL) | \
  299. rt_sigmask(SIGTRAP) | rt_sigmask(SIGABRT) | \
  300. rt_sigmask(SIGFPE) | rt_sigmask(SIGSEGV) | \
  301. rt_sigmask(SIGBUS) | rt_sigmask(SIGSYS) | \
  302. rt_sigmask(SIGXCPU) | rt_sigmask(SIGXFSZ) | \
  303. SIGEMT_MASK )
  304. #define SIG_KERNEL_IGNORE_MASK (\
  305. rt_sigmask(SIGCONT) | rt_sigmask(SIGCHLD) | \
  306. rt_sigmask(SIGWINCH) | rt_sigmask(SIGURG) )
  307. #define sig_kernel_only(sig) \
  308. (((sig) < SIGRTMIN) && siginmask(sig, SIG_KERNEL_ONLY_MASK))
  309. #define sig_kernel_coredump(sig) \
  310. (((sig) < SIGRTMIN) && siginmask(sig, SIG_KERNEL_COREDUMP_MASK))
  311. #define sig_kernel_ignore(sig) \
  312. (((sig) < SIGRTMIN) && siginmask(sig, SIG_KERNEL_IGNORE_MASK))
  313. #define sig_kernel_stop(sig) \
  314. (((sig) < SIGRTMIN) && siginmask(sig, SIG_KERNEL_STOP_MASK))
  315. #define sig_needs_tasklist(sig) ((sig) == SIGCONT)
  316. #define sig_user_defined(t, signr) \
  317. (((t)->sighand->action[(signr)-1].sa.sa_handler != SIG_DFL) && \
  318. ((t)->sighand->action[(signr)-1].sa.sa_handler != SIG_IGN))
  319. #define sig_fatal(t, signr) \
  320. (!siginmask(signr, SIG_KERNEL_IGNORE_MASK|SIG_KERNEL_STOP_MASK) && \
  321. (t)->sighand->action[(signr)-1].sa.sa_handler == SIG_DFL)
  322. void signals_init(void);
  323. #endif /* __KERNEL__ */
  324. #endif /* _LINUX_SIGNAL_H */