thr_sig.c revision 286853
1/*
2 * Copyright (c) 2005, David Xu <davidxu@freebsd.org>
3 * All rights reserved.
4 *
5 * Redistribution and use in source and binary forms, with or without
6 * modification, are permitted provided that the following conditions
7 * are met:
8 * 1. Redistributions of source code must retain the above copyright
9 *    notice unmodified, this list of conditions, and the following
10 *    disclaimer.
11 * 2. Redistributions in binary form must reproduce the above copyright
12 *    notice, this list of conditions and the following disclaimer in the
13 *    documentation and/or other materials provided with the distribution.
14 *
15 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
16 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
17 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
18 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
19 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
20 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
21 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
22 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
23 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
24 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
25 *
26 * $FreeBSD: stable/10/lib/libthr/thread/thr_sig.c 286853 2015-08-17 18:34:54Z kib $
27 */
28
29#include "namespace.h"
30#include <sys/param.h>
31#include <sys/types.h>
32#include <sys/signalvar.h>
33#include <sys/syscall.h>
34#include <signal.h>
35#include <errno.h>
36#include <stdlib.h>
37#include <string.h>
38#include <pthread.h>
39#include "un-namespace.h"
40#include "libc_private.h"
41
42#include "libc_private.h"
43#include "thr_private.h"
44
45/* #define DEBUG_SIGNAL */
46#ifdef DEBUG_SIGNAL
47#define DBG_MSG		stdout_debug
48#else
49#define DBG_MSG(x...)
50#endif
51
52struct usigaction {
53	struct sigaction sigact;
54	struct urwlock   lock;
55};
56
57static struct usigaction _thr_sigact[_SIG_MAXSIG];
58
59static inline struct usigaction *
60__libc_sigaction_slot(int signo)
61{
62
63	return (&_thr_sigact[signo - 1]);
64}
65
66static void thr_sighandler(int, siginfo_t *, void *);
67static void handle_signal(struct sigaction *, int, siginfo_t *, ucontext_t *);
68static void check_deferred_signal(struct pthread *);
69static void check_suspend(struct pthread *);
70static void check_cancel(struct pthread *curthread, ucontext_t *ucp);
71
72int	_sigtimedwait(const sigset_t *set, siginfo_t *info,
73	const struct timespec * timeout);
74int	_sigwaitinfo(const sigset_t *set, siginfo_t *info);
75int	_sigwait(const sigset_t *set, int *sig);
76int	_setcontext(const ucontext_t *);
77int	_swapcontext(ucontext_t *, const ucontext_t *);
78
79static const sigset_t _thr_deferset={{
80	0xffffffff & ~(_SIG_BIT(SIGBUS)|_SIG_BIT(SIGILL)|_SIG_BIT(SIGFPE)|
81	_SIG_BIT(SIGSEGV)|_SIG_BIT(SIGTRAP)|_SIG_BIT(SIGSYS)),
82	0xffffffff,
83	0xffffffff,
84	0xffffffff}};
85
86static const sigset_t _thr_maskset={{
87	0xffffffff,
88	0xffffffff,
89	0xffffffff,
90	0xffffffff}};
91
92void
93_thr_signal_block(struct pthread *curthread)
94{
95
96	if (curthread->sigblock > 0) {
97		curthread->sigblock++;
98		return;
99	}
100	__sys_sigprocmask(SIG_BLOCK, &_thr_maskset, &curthread->sigmask);
101	curthread->sigblock++;
102}
103
104void
105_thr_signal_unblock(struct pthread *curthread)
106{
107	if (--curthread->sigblock == 0)
108		__sys_sigprocmask(SIG_SETMASK, &curthread->sigmask, NULL);
109}
110
111int
112_thr_send_sig(struct pthread *thread, int sig)
113{
114	return thr_kill(thread->tid, sig);
115}
116
117static inline void
118remove_thr_signals(sigset_t *set)
119{
120	if (SIGISMEMBER(*set, SIGCANCEL))
121		SIGDELSET(*set, SIGCANCEL);
122}
123
124static const sigset_t *
125thr_remove_thr_signals(const sigset_t *set, sigset_t *newset)
126{
127	*newset = *set;
128	remove_thr_signals(newset);
129	return (newset);
130}
131
132static void
133sigcancel_handler(int sig __unused,
134	siginfo_t *info __unused, ucontext_t *ucp)
135{
136	struct pthread *curthread = _get_curthread();
137	int err;
138
139	if (THR_IN_CRITICAL(curthread))
140		return;
141	err = errno;
142	check_suspend(curthread);
143	check_cancel(curthread, ucp);
144	errno = err;
145}
146
147typedef void (*ohandler)(int sig, int code, struct sigcontext *scp,
148    char *addr, __sighandler_t *catcher);
149
150/*
151 * The signal handler wrapper is entered with all signal masked.
152 */
153static void
154thr_sighandler(int sig, siginfo_t *info, void *_ucp)
155{
156	struct pthread *curthread;
157	ucontext_t *ucp;
158	struct sigaction act;
159	struct usigaction *usa;
160	int err;
161
162	err = errno;
163	curthread = _get_curthread();
164	ucp = _ucp;
165	usa = __libc_sigaction_slot(sig);
166	_thr_rwl_rdlock(&usa->lock);
167	act = usa->sigact;
168	_thr_rwl_unlock(&usa->lock);
169	errno = err;
170	curthread->deferred_run = 0;
171
172	/*
173	 * if a thread is in critical region, for example it holds low level locks,
174	 * try to defer the signal processing, however if the signal is synchronous
175	 * signal, it means a bad thing has happened, this is a programming error,
176	 * resuming fault point can not help anything (normally causes deadloop),
177	 * so here we let user code handle it immediately.
178	 */
179	if (THR_IN_CRITICAL(curthread) && SIGISMEMBER(_thr_deferset, sig)) {
180		memcpy(&curthread->deferred_sigact, &act, sizeof(struct sigaction));
181		memcpy(&curthread->deferred_siginfo, info, sizeof(siginfo_t));
182		curthread->deferred_sigmask = ucp->uc_sigmask;
183		/* mask all signals, we will restore it later. */
184		ucp->uc_sigmask = _thr_deferset;
185		return;
186	}
187
188	handle_signal(&act, sig, info, ucp);
189}
190
191static void
192handle_signal(struct sigaction *actp, int sig, siginfo_t *info, ucontext_t *ucp)
193{
194	struct pthread *curthread = _get_curthread();
195	ucontext_t uc2;
196	__siginfohandler_t *sigfunc;
197	int cancel_point;
198	int cancel_async;
199	int cancel_enable;
200	int in_sigsuspend;
201	int err;
202
203	/* add previous level mask */
204	SIGSETOR(actp->sa_mask, ucp->uc_sigmask);
205
206	/* add this signal's mask */
207	if (!(actp->sa_flags & SA_NODEFER))
208		SIGADDSET(actp->sa_mask, sig);
209
210	in_sigsuspend = curthread->in_sigsuspend;
211	curthread->in_sigsuspend = 0;
212
213	/*
214	 * If thread is in deferred cancellation mode, disable cancellation
215	 * in signal handler.
216	 * If user signal handler calls a cancellation point function, e.g,
217	 * it calls write() to write data to file, because write() is a
218	 * cancellation point, the thread is immediately cancelled if
219	 * cancellation is pending, to avoid this problem while thread is in
220	 * deferring mode, cancellation is temporarily disabled.
221	 */
222	cancel_point = curthread->cancel_point;
223	cancel_async = curthread->cancel_async;
224	cancel_enable = curthread->cancel_enable;
225	curthread->cancel_point = 0;
226	if (!cancel_async)
227		curthread->cancel_enable = 0;
228
229	/* restore correct mask before calling user handler */
230	__sys_sigprocmask(SIG_SETMASK, &actp->sa_mask, NULL);
231
232	sigfunc = actp->sa_sigaction;
233
234	/*
235	 * We have already reset cancellation point flags, so if user's code
236	 * longjmp()s out of its signal handler, wish its jmpbuf was set
237	 * outside of a cancellation point, in most cases, this would be
238	 * true.  However, there is no way to save cancel_enable in jmpbuf,
239	 * so after setjmps() returns once more, the user code may need to
240	 * re-set cancel_enable flag by calling pthread_setcancelstate().
241	 */
242	if ((actp->sa_flags & SA_SIGINFO) != 0) {
243		sigfunc(sig, info, ucp);
244	} else {
245		((ohandler)sigfunc)(sig, info->si_code,
246		    (struct sigcontext *)ucp, info->si_addr,
247		    (__sighandler_t *)sigfunc);
248	}
249	err = errno;
250
251	curthread->in_sigsuspend = in_sigsuspend;
252	curthread->cancel_point = cancel_point;
253	curthread->cancel_enable = cancel_enable;
254
255	memcpy(&uc2, ucp, sizeof(uc2));
256	SIGDELSET(uc2.uc_sigmask, SIGCANCEL);
257
258	/* reschedule cancellation */
259	check_cancel(curthread, &uc2);
260	errno = err;
261	syscall(SYS_sigreturn, &uc2);
262}
263
264void
265_thr_ast(struct pthread *curthread)
266{
267
268	if (!THR_IN_CRITICAL(curthread)) {
269		check_deferred_signal(curthread);
270		check_suspend(curthread);
271		check_cancel(curthread, NULL);
272	}
273}
274
275/* reschedule cancellation */
276static void
277check_cancel(struct pthread *curthread, ucontext_t *ucp)
278{
279
280	if (__predict_true(!curthread->cancel_pending ||
281	    !curthread->cancel_enable || curthread->no_cancel))
282		return;
283
284	/*
285 	 * Otherwise, we are in defer mode, and we are at
286	 * cancel point, tell kernel to not block the current
287	 * thread on next cancelable system call.
288	 *
289	 * There are three cases we should call thr_wake() to
290	 * turn on TDP_WAKEUP or send SIGCANCEL in kernel:
291	 * 1) we are going to call a cancelable system call,
292	 *    non-zero cancel_point means we are already in
293	 *    cancelable state, next system call is cancelable.
294	 * 2) because _thr_ast() may be called by
295	 *    THR_CRITICAL_LEAVE() which is used by rtld rwlock
296	 *    and any libthr internal locks, when rtld rwlock
297	 *    is used, it is mostly caused by an unresolved PLT.
298	 *    Those routines may clear the TDP_WAKEUP flag by
299	 *    invoking some system calls, in those cases, we
300	 *    also should reenable the flag.
301	 * 3) thread is in sigsuspend(), and the syscall insists
302	 *    on getting a signal before it agrees to return.
303 	 */
304	if (curthread->cancel_point) {
305		if (curthread->in_sigsuspend && ucp) {
306			SIGADDSET(ucp->uc_sigmask, SIGCANCEL);
307			curthread->unblock_sigcancel = 1;
308			_thr_send_sig(curthread, SIGCANCEL);
309		} else
310			thr_wake(curthread->tid);
311	} else if (curthread->cancel_async) {
312		/*
313		 * asynchronous cancellation mode, act upon
314		 * immediately.
315		 */
316		_pthread_exit_mask(PTHREAD_CANCELED,
317		    ucp? &ucp->uc_sigmask : NULL);
318	}
319}
320
321static void
322check_deferred_signal(struct pthread *curthread)
323{
324	ucontext_t *uc;
325	struct sigaction act;
326	siginfo_t info;
327	int uc_len;
328
329	if (__predict_true(curthread->deferred_siginfo.si_signo == 0 ||
330	    curthread->deferred_run))
331		return;
332
333	curthread->deferred_run = 1;
334	uc_len = __getcontextx_size();
335	uc = alloca(uc_len);
336	getcontext(uc);
337	if (curthread->deferred_siginfo.si_signo == 0) {
338		curthread->deferred_run = 0;
339		return;
340	}
341	__fillcontextx2((char *)uc);
342	act = curthread->deferred_sigact;
343	uc->uc_sigmask = curthread->deferred_sigmask;
344	memcpy(&info, &curthread->deferred_siginfo, sizeof(siginfo_t));
345	/* remove signal */
346	curthread->deferred_siginfo.si_signo = 0;
347	handle_signal(&act, info.si_signo, &info, uc);
348}
349
350static void
351check_suspend(struct pthread *curthread)
352{
353	uint32_t cycle;
354
355	if (__predict_true((curthread->flags &
356		(THR_FLAGS_NEED_SUSPEND | THR_FLAGS_SUSPENDED))
357		!= THR_FLAGS_NEED_SUSPEND))
358		return;
359	if (curthread == _single_thread)
360		return;
361	if (curthread->force_exit)
362		return;
363
364	/*
365	 * Blocks SIGCANCEL which other threads must send.
366	 */
367	_thr_signal_block(curthread);
368
369	/*
370	 * Increase critical_count, here we don't use THR_LOCK/UNLOCK
371	 * because we are leaf code, we don't want to recursively call
372	 * ourself.
373	 */
374	curthread->critical_count++;
375	THR_UMUTEX_LOCK(curthread, &(curthread)->lock);
376	while ((curthread->flags & (THR_FLAGS_NEED_SUSPEND |
377		THR_FLAGS_SUSPENDED)) == THR_FLAGS_NEED_SUSPEND) {
378		curthread->cycle++;
379		cycle = curthread->cycle;
380
381		/* Wake the thread suspending us. */
382		_thr_umtx_wake(&curthread->cycle, INT_MAX, 0);
383
384		/*
385		 * if we are from pthread_exit, we don't want to
386		 * suspend, just go and die.
387		 */
388		if (curthread->state == PS_DEAD)
389			break;
390		curthread->flags |= THR_FLAGS_SUSPENDED;
391		THR_UMUTEX_UNLOCK(curthread, &(curthread)->lock);
392		_thr_umtx_wait_uint(&curthread->cycle, cycle, NULL, 0);
393		THR_UMUTEX_LOCK(curthread, &(curthread)->lock);
394		curthread->flags &= ~THR_FLAGS_SUSPENDED;
395	}
396	THR_UMUTEX_UNLOCK(curthread, &(curthread)->lock);
397	curthread->critical_count--;
398
399	_thr_signal_unblock(curthread);
400}
401
402void
403_thr_signal_init(int dlopened)
404{
405	struct sigaction act, nact, oact;
406	struct usigaction *usa;
407	sigset_t oldset;
408	int sig, error;
409
410	if (dlopened) {
411		__sys_sigprocmask(SIG_SETMASK, &_thr_maskset, &oldset);
412		for (sig = 1; sig <= _SIG_MAXSIG; sig++) {
413			if (sig == SIGCANCEL)
414				continue;
415			error = __sys_sigaction(sig, NULL, &oact);
416			if (error == -1 || oact.sa_handler == SIG_DFL ||
417			    oact.sa_handler == SIG_IGN)
418				continue;
419			usa = __libc_sigaction_slot(sig);
420			usa->sigact = oact;
421			nact = oact;
422			remove_thr_signals(&usa->sigact.sa_mask);
423			nact.sa_flags &= ~SA_NODEFER;
424			nact.sa_flags |= SA_SIGINFO;
425			nact.sa_sigaction = thr_sighandler;
426			nact.sa_mask = _thr_maskset;
427			(void)__sys_sigaction(sig, &nact, NULL);
428		}
429		__sys_sigprocmask(SIG_SETMASK, &oldset, NULL);
430	}
431
432	/* Install SIGCANCEL handler. */
433	SIGFILLSET(act.sa_mask);
434	act.sa_flags = SA_SIGINFO;
435	act.sa_sigaction = (__siginfohandler_t *)&sigcancel_handler;
436	__sys_sigaction(SIGCANCEL, &act, NULL);
437
438	/* Unblock SIGCANCEL */
439	SIGEMPTYSET(act.sa_mask);
440	SIGADDSET(act.sa_mask, SIGCANCEL);
441	__sys_sigprocmask(SIG_UNBLOCK, &act.sa_mask, NULL);
442}
443
444void
445_thr_sigact_unload(struct dl_phdr_info *phdr_info)
446{
447#if 0
448	struct pthread *curthread = _get_curthread();
449	struct urwlock *rwlp;
450	struct sigaction *actp;
451	struct usigaction *usa;
452	struct sigaction kact;
453	void (*handler)(int);
454	int sig;
455
456	_thr_signal_block(curthread);
457	for (sig = 1; sig <= _SIG_MAXSIG; sig++) {
458		usa = __libc_sigaction_slot(sig);
459		actp = &usa->sigact;
460retry:
461		handler = actp->sa_handler;
462		if (handler != SIG_DFL && handler != SIG_IGN &&
463		    __elf_phdr_match_addr(phdr_info, handler)) {
464			rwlp = &usa->lock;
465			_thr_rwl_wrlock(rwlp);
466			if (handler != actp->sa_handler) {
467				_thr_rwl_unlock(rwlp);
468				goto retry;
469			}
470			actp->sa_handler = SIG_DFL;
471			actp->sa_flags = SA_SIGINFO;
472			SIGEMPTYSET(actp->sa_mask);
473			if (__sys_sigaction(sig, NULL, &kact) == 0 &&
474				kact.sa_handler != SIG_DFL &&
475				kact.sa_handler != SIG_IGN)
476				__sys_sigaction(sig, actp, NULL);
477			_thr_rwl_unlock(rwlp);
478		}
479	}
480	_thr_signal_unblock(curthread);
481#endif
482}
483
484void
485_thr_signal_prefork(void)
486{
487	int i;
488
489	for (i = 1; i <= _SIG_MAXSIG; ++i)
490		_thr_rwl_rdlock(&__libc_sigaction_slot(i)->lock);
491}
492
493void
494_thr_signal_postfork(void)
495{
496	int i;
497
498	for (i = 1; i <= _SIG_MAXSIG; ++i)
499		_thr_rwl_unlock(&__libc_sigaction_slot(i)->lock);
500}
501
502void
503_thr_signal_postfork_child(void)
504{
505	int i;
506
507	for (i = 1; i <= _SIG_MAXSIG; ++i) {
508		bzero(&__libc_sigaction_slot(i) -> lock,
509		    sizeof(struct urwlock));
510	}
511}
512
513void
514_thr_signal_deinit(void)
515{
516}
517
518int
519__thr_sigaction(int sig, const struct sigaction *act, struct sigaction *oact)
520{
521	struct sigaction newact, oldact, oldact2;
522	sigset_t oldset;
523	struct usigaction *usa;
524	int ret, err;
525
526	if (!_SIG_VALID(sig) || sig == SIGCANCEL) {
527		errno = EINVAL;
528		return (-1);
529	}
530
531	ret = 0;
532	err = 0;
533	usa = __libc_sigaction_slot(sig);
534
535	__sys_sigprocmask(SIG_SETMASK, &_thr_maskset, &oldset);
536	_thr_rwl_wrlock(&usa->lock);
537
538	if (act != NULL) {
539		oldact2 = usa->sigact;
540		newact = *act;
541
542 		/*
543		 * if a new sig handler is SIG_DFL or SIG_IGN,
544		 * don't remove old handler from __libc_sigact[],
545		 * so deferred signals still can use the handlers,
546		 * multiple threads invoking sigaction itself is
547		 * a race condition, so it is not a problem.
548		 */
549		if (newact.sa_handler != SIG_DFL &&
550		    newact.sa_handler != SIG_IGN) {
551			usa->sigact = newact;
552			remove_thr_signals(&usa->sigact.sa_mask);
553			newact.sa_flags &= ~SA_NODEFER;
554			newact.sa_flags |= SA_SIGINFO;
555			newact.sa_sigaction = thr_sighandler;
556			newact.sa_mask = _thr_maskset; /* mask all signals */
557		}
558		ret = __sys_sigaction(sig, &newact, &oldact);
559		if (ret == -1) {
560			err = errno;
561			usa->sigact = oldact2;
562		}
563	} else if (oact != NULL) {
564		ret = __sys_sigaction(sig, NULL, &oldact);
565		err = errno;
566	}
567
568	if (oldact.sa_handler != SIG_DFL && oldact.sa_handler != SIG_IGN) {
569		if (act != NULL)
570			oldact = oldact2;
571		else if (oact != NULL)
572			oldact = usa->sigact;
573	}
574
575	_thr_rwl_unlock(&usa->lock);
576	__sys_sigprocmask(SIG_SETMASK, &oldset, NULL);
577
578	if (ret == 0) {
579		if (oact != NULL)
580			*oact = oldact;
581	} else {
582		errno = err;
583	}
584	return (ret);
585}
586
587int
588__thr_sigprocmask(int how, const sigset_t *set, sigset_t *oset)
589{
590	const sigset_t *p = set;
591	sigset_t newset;
592
593	if (how != SIG_UNBLOCK) {
594		if (set != NULL) {
595			newset = *set;
596			SIGDELSET(newset, SIGCANCEL);
597			p = &newset;
598		}
599	}
600	return (__sys_sigprocmask(how, p, oset));
601}
602
603__weak_reference(_pthread_sigmask, pthread_sigmask);
604
605int
606_pthread_sigmask(int how, const sigset_t *set, sigset_t *oset)
607{
608
609	if (__thr_sigprocmask(how, set, oset))
610		return (errno);
611	return (0);
612}
613
614int
615_sigsuspend(const sigset_t * set)
616{
617	sigset_t newset;
618
619	return (__sys_sigsuspend(thr_remove_thr_signals(set, &newset)));
620}
621
622int
623__thr_sigsuspend(const sigset_t * set)
624{
625	struct pthread *curthread;
626	sigset_t newset;
627	int ret, old;
628
629	curthread = _get_curthread();
630
631	old = curthread->in_sigsuspend;
632	curthread->in_sigsuspend = 1;
633	_thr_cancel_enter(curthread);
634	ret = __sys_sigsuspend(thr_remove_thr_signals(set, &newset));
635	_thr_cancel_leave(curthread, 1);
636	curthread->in_sigsuspend = old;
637	if (curthread->unblock_sigcancel) {
638		curthread->unblock_sigcancel = 0;
639		SIGEMPTYSET(newset);
640		SIGADDSET(newset, SIGCANCEL);
641		__sys_sigprocmask(SIG_UNBLOCK, &newset, NULL);
642	}
643
644	return (ret);
645}
646
647int
648_sigtimedwait(const sigset_t *set, siginfo_t *info,
649	const struct timespec * timeout)
650{
651	sigset_t newset;
652
653	return (__sys_sigtimedwait(thr_remove_thr_signals(set, &newset), info,
654	    timeout));
655}
656
657/*
658 * Cancellation behavior:
659 *   Thread may be canceled at start, if thread got signal,
660 *   it is not canceled.
661 */
662int
663__thr_sigtimedwait(const sigset_t *set, siginfo_t *info,
664    const struct timespec * timeout)
665{
666	struct pthread	*curthread = _get_curthread();
667	sigset_t newset;
668	int ret;
669
670	_thr_cancel_enter(curthread);
671	ret = __sys_sigtimedwait(thr_remove_thr_signals(set, &newset), info,
672	    timeout);
673	_thr_cancel_leave(curthread, (ret == -1));
674	return (ret);
675}
676
677int
678_sigwaitinfo(const sigset_t *set, siginfo_t *info)
679{
680	sigset_t newset;
681
682	return (__sys_sigwaitinfo(thr_remove_thr_signals(set, &newset), info));
683}
684
685/*
686 * Cancellation behavior:
687 *   Thread may be canceled at start, if thread got signal,
688 *   it is not canceled.
689 */
690int
691__thr_sigwaitinfo(const sigset_t *set, siginfo_t *info)
692{
693	struct pthread	*curthread = _get_curthread();
694	sigset_t newset;
695	int ret;
696
697	_thr_cancel_enter(curthread);
698	ret = __sys_sigwaitinfo(thr_remove_thr_signals(set, &newset), info);
699	_thr_cancel_leave(curthread, ret == -1);
700	return (ret);
701}
702
703int
704_sigwait(const sigset_t *set, int *sig)
705{
706	sigset_t newset;
707
708	return (__sys_sigwait(thr_remove_thr_signals(set, &newset), sig));
709}
710
711/*
712 * Cancellation behavior:
713 *   Thread may be canceled at start, if thread got signal,
714 *   it is not canceled.
715 */
716int
717__thr_sigwait(const sigset_t *set, int *sig)
718{
719	struct pthread	*curthread = _get_curthread();
720	sigset_t newset;
721	int ret;
722
723	do {
724		_thr_cancel_enter(curthread);
725		ret = __sys_sigwait(thr_remove_thr_signals(set, &newset), sig);
726		_thr_cancel_leave(curthread, (ret != 0));
727	} while (ret == EINTR);
728	return (ret);
729}
730
731int
732__thr_setcontext(const ucontext_t *ucp)
733{
734	ucontext_t uc;
735
736	if (ucp == NULL) {
737		errno = EINVAL;
738		return (-1);
739	}
740	if (!SIGISMEMBER(uc.uc_sigmask, SIGCANCEL))
741		return __sys_setcontext(ucp);
742	(void) memcpy(&uc, ucp, sizeof(uc));
743	SIGDELSET(uc.uc_sigmask, SIGCANCEL);
744	return (__sys_setcontext(&uc));
745}
746
747int
748__thr_swapcontext(ucontext_t *oucp, const ucontext_t *ucp)
749{
750	ucontext_t uc;
751
752	if (oucp == NULL || ucp == NULL) {
753		errno = EINVAL;
754		return (-1);
755	}
756	if (SIGISMEMBER(ucp->uc_sigmask, SIGCANCEL)) {
757		(void) memcpy(&uc, ucp, sizeof(uc));
758		SIGDELSET(uc.uc_sigmask, SIGCANCEL);
759		ucp = &uc;
760	}
761	return (__sys_swapcontext(oucp, ucp));
762}
763