xref: /freebsd/lib/libthr/thread/thr_private.h (revision 10f0bcab61ef441cb5af32fb706688d8cbd55dc0)
1 /*
2  * Copyright (C) 2005 Daniel M. Eischen <deischen@freebsd.org>
3  * Copyright (c) 2005 David Xu <davidxu@freebsd.org>
4  * Copyright (c) 1995-1998 John Birrell <jb@cimlogic.com.au>.
5  *
6  * All rights reserved.
7  *
8  * Redistribution and use in source and binary forms, with or without
9  * modification, are permitted provided that the following conditions
10  * are met:
11  * 1. Redistributions of source code must retain the above copyright
12  *    notice unmodified, this list of conditions, and the following
13  *    disclaimer.
14  * 2. Redistributions in binary form must reproduce the above copyright
15  *    notice, this list of conditions and the following disclaimer in the
16  *    documentation and/or other materials provided with the distribution.
17  *
18  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
19  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
20  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
21  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
22  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
23  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
24  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
25  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
26  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
27  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
28  *
29  * $FreeBSD$
30  */
31 
32 #ifndef _THR_PRIVATE_H
33 #define _THR_PRIVATE_H
34 
35 /*
36  * Include files.
37  */
38 #include <sys/types.h>
39 #include <sys/time.h>
40 #include <sys/cdefs.h>
41 #include <sys/queue.h>
42 #include <sys/param.h>
43 #include <sys/cpuset.h>
44 #include <machine/atomic.h>
45 #include <errno.h>
46 #include <limits.h>
47 #include <signal.h>
48 #include <stddef.h>
49 #include <stdio.h>
50 #include <unistd.h>
51 #include <ucontext.h>
52 #include <sys/thr.h>
53 #include <pthread.h>
54 
55 #ifndef __hidden
56 #define __hidden		__attribute__((visibility("hidden")))
57 #endif
58 
59 #include "pthread_md.h"
60 #include "thr_umtx.h"
61 #include "thread_db.h"
62 
63 typedef TAILQ_HEAD(pthreadlist, pthread) pthreadlist;
64 typedef TAILQ_HEAD(atfork_head, pthread_atfork) atfork_head;
65 TAILQ_HEAD(mutex_queue, pthread_mutex);
66 
67 /* Signal to do cancellation */
68 #define	SIGCANCEL		32
69 
70 /*
71  * Kernel fatal error handler macro.
72  */
73 #define PANIC(string)		_thread_exit(__FILE__,__LINE__,string)
74 
75 /* Output debug messages like this: */
76 #define stdout_debug(args...)	_thread_printf(STDOUT_FILENO, ##args)
77 #define stderr_debug(args...)	_thread_printf(STDERR_FILENO, ##args)
78 
79 #ifdef _PTHREADS_INVARIANTS
80 #define THR_ASSERT(cond, msg) do {	\
81 	if (__predict_false(!(cond)))	\
82 		PANIC(msg);		\
83 } while (0)
84 #else
85 #define THR_ASSERT(cond, msg)
86 #endif
87 
88 #ifdef PIC
89 # define STATIC_LIB_REQUIRE(name)
90 #else
91 # define STATIC_LIB_REQUIRE(name) __asm (".globl " #name)
92 #endif
93 
94 #define	TIMESPEC_ADD(dst, src, val)				\
95 	do { 							\
96 		(dst)->tv_sec = (src)->tv_sec + (val)->tv_sec;	\
97 		(dst)->tv_nsec = (src)->tv_nsec + (val)->tv_nsec; \
98 		if ((dst)->tv_nsec >= 1000000000) {		\
99 			(dst)->tv_sec++;			\
100 			(dst)->tv_nsec -= 1000000000;		\
101 		}						\
102 	} while (0)
103 
104 #define	TIMESPEC_SUB(dst, src, val)				\
105 	do { 							\
106 		(dst)->tv_sec = (src)->tv_sec - (val)->tv_sec;	\
107 		(dst)->tv_nsec = (src)->tv_nsec - (val)->tv_nsec; \
108 		if ((dst)->tv_nsec < 0) {			\
109 			(dst)->tv_sec--;			\
110 			(dst)->tv_nsec += 1000000000;		\
111 		}						\
112 	} while (0)
113 
114 struct pthread_mutex {
115 	/*
116 	 * Lock for accesses to this structure.
117 	 */
118 	struct umutex			m_lock;
119 	enum pthread_mutextype		m_type;
120 	struct pthread			*m_owner;
121 	int				m_flags;
122 	int				m_count;
123 	int				m_refcount;
124 	int				m_spinloops;
125 	int				m_yieldloops;
126 	/*
127 	 * Link for all mutexes a thread currently owns.
128 	 */
129 	TAILQ_ENTRY(pthread_mutex)	m_qe;
130 };
131 
132 /*
133  * Flags for mutexes.
134  */
135 #define MUTEX_FLAGS_PRIVATE	0x01
136 #define MUTEX_FLAGS_INITED	0x02
137 #define MUTEX_FLAGS_BUSY	0x04
138 
139 struct pthread_mutex_attr {
140 	enum pthread_mutextype	m_type;
141 	int			m_protocol;
142 	int			m_ceiling;
143 	int			m_flags;
144 };
145 
146 #define PTHREAD_MUTEXATTR_STATIC_INITIALIZER \
147 	{ PTHREAD_MUTEX_DEFAULT, PTHREAD_PRIO_NONE, 0, MUTEX_FLAGS_PRIVATE }
148 
149 struct pthread_cond {
150 	struct umutex	c_lock;
151 	struct ucond	c_kerncv;
152 	int		c_pshared;
153 	int		c_clockid;
154 };
155 
156 struct pthread_cond_attr {
157 	int		c_pshared;
158 	int		c_clockid;
159 };
160 
161 struct pthread_barrier {
162 	struct umutex		b_lock;
163 	struct ucond		b_cv;
164 	volatile int64_t	b_cycle;
165 	volatile int		b_count;
166 	volatile int		b_waiters;
167 };
168 
169 struct pthread_barrierattr {
170 	int		pshared;
171 };
172 
173 struct pthread_spinlock {
174 	struct umutex	s_lock;
175 };
176 
177 /*
178  * Flags for condition variables.
179  */
180 #define COND_FLAGS_PRIVATE	0x01
181 #define COND_FLAGS_INITED	0x02
182 #define COND_FLAGS_BUSY		0x04
183 
184 /*
185  * Cleanup definitions.
186  */
187 struct pthread_cleanup {
188 	struct pthread_cleanup	*next;
189 	void			(*routine)(void *args);
190 	void			*routine_arg;
191 	int			onstack;
192 };
193 
194 #define	THR_CLEANUP_PUSH(td, func, arg) {		\
195 	struct pthread_cleanup __cup;			\
196 							\
197 	__cup.routine = func;				\
198 	__cup.routine_arg = arg;			\
199 	__cup.onstack = 1;				\
200 	__cup.next = (td)->cleanup;			\
201 	(td)->cleanup = &__cup;
202 
203 #define	THR_CLEANUP_POP(td, exec)			\
204 	(td)->cleanup = __cup.next;			\
205 	if ((exec) != 0)				\
206 		__cup.routine(__cup.routine_arg);	\
207 }
208 
209 struct pthread_atfork {
210 	TAILQ_ENTRY(pthread_atfork) qe;
211 	void (*prepare)(void);
212 	void (*parent)(void);
213 	void (*child)(void);
214 };
215 
216 struct pthread_attr {
217 	int	sched_policy;
218 	int	sched_inherit;
219 	int	prio;
220 	int	suspend;
221 #define	THR_STACK_USER		0x100	/* 0xFF reserved for <pthread.h> */
222 	int	flags;
223 	void	*stackaddr_attr;
224 	size_t	stacksize_attr;
225 	size_t	guardsize_attr;
226 	cpuset_t	*cpuset;
227 	size_t	cpusetsize;
228 };
229 
230 /*
231  * Thread creation state attributes.
232  */
233 #define THR_CREATE_RUNNING		0
234 #define THR_CREATE_SUSPENDED		1
235 
236 /*
237  * Miscellaneous definitions.
238  */
239 #define THR_STACK_DEFAULT		(sizeof(void *) / 4 * 1024 * 1024)
240 
241 /*
242  * Maximum size of initial thread's stack.  This perhaps deserves to be larger
243  * than the stacks of other threads, since many applications are likely to run
244  * almost entirely on this stack.
245  */
246 #define THR_STACK_INITIAL		(THR_STACK_DEFAULT * 2)
247 
248 /*
249  * Define priorities returned by kernel.
250  */
251 #define THR_MIN_PRIORITY		(_thr_priorities[SCHED_OTHER-1].pri_min)
252 #define THR_MAX_PRIORITY		(_thr_priorities[SCHED_OTHER-1].pri_max)
253 #define THR_DEF_PRIORITY		(_thr_priorities[SCHED_OTHER-1].pri_default)
254 
255 #define THR_MIN_RR_PRIORITY		(_thr_priorities[SCHED_RR-1].pri_min)
256 #define THR_MAX_RR_PRIORITY		(_thr_priorities[SCHED_RR-1].pri_max)
257 #define THR_DEF_RR_PRIORITY		(_thr_priorities[SCHED_RR-1].pri_default)
258 
259 /* XXX The SCHED_FIFO should have same priority range as SCHED_RR */
260 #define THR_MIN_FIFO_PRIORITY		(_thr_priorities[SCHED_FIFO_1].pri_min)
261 #define THR_MAX_FIFO_PRIORITY		(_thr_priorities[SCHED_FIFO-1].pri_max)
262 #define THR_DEF_FIFO_PRIORITY		(_thr_priorities[SCHED_FIFO-1].pri_default)
263 
264 struct pthread_prio {
265 	int	pri_min;
266 	int	pri_max;
267 	int	pri_default;
268 };
269 
270 struct pthread_rwlockattr {
271 	int		pshared;
272 };
273 
274 struct pthread_rwlock {
275 	pthread_mutex_t	lock;	/* monitor lock */
276 	pthread_cond_t	read_signal;
277 	pthread_cond_t	write_signal;
278 	int		state;	/* 0 = idle  >0 = # of readers  -1 = writer */
279 	int		blocked_writers;
280 };
281 
282 /*
283  * Thread states.
284  */
285 enum pthread_state {
286 	PS_RUNNING,
287 	PS_DEAD
288 };
289 
290 struct pthread_specific_elem {
291 	const void	*data;
292 	int		seqno;
293 };
294 
295 struct pthread_key {
296 	volatile int	allocated;
297 	int		seqno;
298 	void            (*destructor)(void *);
299 };
300 
301 /*
302  * lwpid_t is 32bit but kernel thr API exports tid as long type
303  * in very earily date.
304  */
305 #define TID(thread)	((uint32_t) ((thread)->tid))
306 
307 /*
308  * Thread structure.
309  */
310 struct pthread {
311 	/* Kernel thread id. */
312 	long			tid;
313 #define	TID_TERMINATED		1
314 
315 	/*
316 	 * Lock for accesses to this thread structure.
317 	 */
318 	struct umutex		lock;
319 
320 	/* Internal condition variable cycle number. */
321 	long			cycle;
322 
323 	/* How many low level locks the thread held. */
324 	int			locklevel;
325 
326 	/*
327 	 * Set to non-zero when this thread has entered a critical
328 	 * region.  We allow for recursive entries into critical regions.
329 	 */
330 	int			critical_count;
331 
332 	/* Signal blocked counter. */
333 	int			sigblock;
334 
335 	/* Queue entry for list of all threads. */
336 	TAILQ_ENTRY(pthread)	tle;	/* link for all threads in process */
337 
338 	/* Queue entry for GC lists. */
339 	TAILQ_ENTRY(pthread)	gcle;
340 
341 	/* Hash queue entry. */
342 	LIST_ENTRY(pthread)	hle;
343 
344 	/* Threads reference count. */
345 	int			refcount;
346 
347 	/*
348 	 * Thread start routine, argument, stack pointer and thread
349 	 * attributes.
350 	 */
351 	void			*(*start_routine)(void *);
352 	void			*arg;
353 	struct pthread_attr	attr;
354 
355 #define	SHOULD_CANCEL(thr)					\
356 	((thr)->cancel_pending &&				\
357 	 ((thr)->cancel_point || (thr)->cancel_async) &&	\
358 	 (thr)->cancel_enable && (thr)->cancelling == 0)
359 
360 	/* Cancellation is enabled */
361 	int			cancel_enable;
362 
363 	/* Cancellation request is pending */
364 	int			cancel_pending;
365 
366 	/* Thread is at cancellation point */
367 	int			cancel_point;
368 
369 	/* Cancellation should be synchoronized */
370 	int			cancel_defer;
371 
372 	/* Asynchronouse cancellation is enabled */
373 	int			cancel_async;
374 
375 	/* Cancellation is in progress */
376 	int			cancelling;
377 
378 	/* Thread temporary signal mask. */
379 	sigset_t		sigmask;
380 
381 	/* Thread is in SIGCANCEL handler. */
382 	int			in_sigcancel_handler;
383 
384 	/* New thread should unblock SIGCANCEL. */
385 	int			unblock_sigcancel;
386 
387 	/* Force new thread to exit. */
388 	int			force_exit;
389 
390 	/* Thread state: */
391 	enum pthread_state 	state;
392 
393 	/*
394 	 * Error variable used instead of errno. The function __error()
395 	 * returns a pointer to this.
396 	 */
397 	int			error;
398 
399 	/*
400 	 * The joiner is the thread that is joining to this thread.  The
401 	 * join status keeps track of a join operation to another thread.
402 	 */
403 	struct pthread		*joiner;
404 
405 	/* Miscellaneous flags; only set with scheduling lock held. */
406 	int			flags;
407 #define THR_FLAGS_PRIVATE	0x0001
408 #define	THR_FLAGS_NEED_SUSPEND	0x0002	/* thread should be suspended */
409 #define	THR_FLAGS_SUSPENDED	0x0004	/* thread is suspended */
410 
411 	/* Thread list flags; only set with thread list lock held. */
412 	int			tlflags;
413 #define	TLFLAGS_GC_SAFE		0x0001	/* thread safe for cleaning */
414 #define	TLFLAGS_IN_TDLIST	0x0002	/* thread in all thread list */
415 #define	TLFLAGS_IN_GCLIST	0x0004	/* thread in gc list */
416 #define	TLFLAGS_DETACHED	0x0008	/* thread is detached */
417 
418 	/* Queue of currently owned NORMAL or PRIO_INHERIT type mutexes. */
419 	struct mutex_queue	mutexq;
420 
421 	/* Queue of all owned PRIO_PROTECT mutexes. */
422 	struct mutex_queue	pp_mutexq;
423 
424 	void				*ret;
425 	struct pthread_specific_elem	*specific;
426 	int				specific_data_count;
427 
428 	/* Number rwlocks rdlocks held. */
429 	int			rdlock_count;
430 
431 	/*
432 	 * Current locks bitmap for rtld. */
433 	int			rtld_bits;
434 
435 	/* Thread control block */
436 	struct tcb		*tcb;
437 
438 	/* Cleanup handlers Link List */
439 	struct pthread_cleanup	*cleanup;
440 
441 	/*
442 	 * Magic value to help recognize a valid thread structure
443 	 * from an invalid one:
444 	 */
445 #define	THR_MAGIC		((u_int32_t) 0xd09ba115)
446 	u_int32_t		magic;
447 
448 	/* Enable event reporting */
449 	int			report_events;
450 
451 	/* Event mask */
452 	int			event_mask;
453 
454 	/* Event */
455 	td_event_msg_t		event_buf;
456 };
457 
458 #define	THR_IN_CRITICAL(thrd)				\
459 	(((thrd)->locklevel > 0) ||			\
460 	((thrd)->critical_count > 0))
461 
462 #define	THR_CRITICAL_ENTER(thrd)			\
463 	(thrd)->critical_count++
464 
465 #define	THR_CRITICAL_LEAVE(thrd)			\
466 	(thrd)->critical_count--;			\
467 	_thr_ast(thrd);
468 
469 #define THR_UMUTEX_TRYLOCK(thrd, lck)			\
470 	_thr_umutex_trylock((lck), TID(thrd))
471 
472 #define	THR_UMUTEX_LOCK(thrd, lck)			\
473 	_thr_umutex_lock((lck), TID(thrd))
474 
475 #define	THR_UMUTEX_TIMEDLOCK(thrd, lck, timo)		\
476 	_thr_umutex_timedlock((lck), TID(thrd), (timo))
477 
478 #define	THR_UMUTEX_UNLOCK(thrd, lck)			\
479 	_thr_umutex_unlock((lck), TID(thrd))
480 
481 #define	THR_LOCK_ACQUIRE(thrd, lck)			\
482 do {							\
483 	(thrd)->locklevel++;				\
484 	_thr_umutex_lock(lck, TID(thrd));		\
485 } while (0)
486 
487 #ifdef	_PTHREADS_INVARIANTS
488 #define	THR_ASSERT_LOCKLEVEL(thrd)			\
489 do {							\
490 	if (__predict_false((thrd)->locklevel <= 0))	\
491 		_thr_assert_lock_level();		\
492 } while (0)
493 #else
494 #define THR_ASSERT_LOCKLEVEL(thrd)
495 #endif
496 
497 #define	THR_LOCK_RELEASE(thrd, lck)			\
498 do {							\
499 	THR_ASSERT_LOCKLEVEL(thrd);			\
500 	_thr_umutex_unlock((lck), TID(thrd));		\
501 	(thrd)->locklevel--;				\
502 	_thr_ast(thrd);					\
503 } while (0)
504 
505 #define	THR_LOCK(curthrd)		THR_LOCK_ACQUIRE(curthrd, &(curthrd)->lock)
506 #define	THR_UNLOCK(curthrd)		THR_LOCK_RELEASE(curthrd, &(curthrd)->lock)
507 #define	THR_THREAD_LOCK(curthrd, thr)	THR_LOCK_ACQUIRE(curthrd, &(thr)->lock)
508 #define	THR_THREAD_UNLOCK(curthrd, thr)	THR_LOCK_RELEASE(curthrd, &(thr)->lock)
509 
510 #define	THREAD_LIST_LOCK(curthrd)				\
511 do {								\
512 	THR_LOCK_ACQUIRE((curthrd), &_thr_list_lock);		\
513 } while (0)
514 
515 #define	THREAD_LIST_UNLOCK(curthrd)				\
516 do {								\
517 	THR_LOCK_RELEASE((curthrd), &_thr_list_lock);		\
518 } while (0)
519 
520 /*
521  * Macros to insert/remove threads to the all thread list and
522  * the gc list.
523  */
524 #define	THR_LIST_ADD(thrd) do {					\
525 	if (((thrd)->tlflags & TLFLAGS_IN_TDLIST) == 0) {	\
526 		TAILQ_INSERT_HEAD(&_thread_list, thrd, tle);	\
527 		_thr_hash_add(thrd);				\
528 		(thrd)->tlflags |= TLFLAGS_IN_TDLIST;		\
529 	}							\
530 } while (0)
531 #define	THR_LIST_REMOVE(thrd) do {				\
532 	if (((thrd)->tlflags & TLFLAGS_IN_TDLIST) != 0) {	\
533 		TAILQ_REMOVE(&_thread_list, thrd, tle);		\
534 		_thr_hash_remove(thrd);				\
535 		(thrd)->tlflags &= ~TLFLAGS_IN_TDLIST;		\
536 	}							\
537 } while (0)
538 #define	THR_GCLIST_ADD(thrd) do {				\
539 	if (((thrd)->tlflags & TLFLAGS_IN_GCLIST) == 0) {	\
540 		TAILQ_INSERT_HEAD(&_thread_gc_list, thrd, gcle);\
541 		(thrd)->tlflags |= TLFLAGS_IN_GCLIST;		\
542 		_gc_count++;					\
543 	}							\
544 } while (0)
545 #define	THR_GCLIST_REMOVE(thrd) do {				\
546 	if (((thrd)->tlflags & TLFLAGS_IN_GCLIST) != 0) {	\
547 		TAILQ_REMOVE(&_thread_gc_list, thrd, gcle);	\
548 		(thrd)->tlflags &= ~TLFLAGS_IN_GCLIST;		\
549 		_gc_count--;					\
550 	}							\
551 } while (0)
552 
553 #define GC_NEEDED()	(_gc_count >= 5)
554 
555 #define SHOULD_REPORT_EVENT(curthr, e)			\
556 	(curthr->report_events && 			\
557 	 (((curthr)->event_mask | _thread_event_mask ) & e) != 0)
558 
559 extern int __isthreaded;
560 
561 /*
562  * Global variables for the pthread kernel.
563  */
564 
565 extern char		*_usrstack __hidden;
566 extern struct pthread	*_thr_initial __hidden;
567 
568 /* For debugger */
569 extern int		_libthr_debug;
570 extern int		_thread_event_mask;
571 extern struct pthread	*_thread_last_event;
572 
573 /* List of all threads: */
574 extern pthreadlist	_thread_list;
575 
576 /* List of threads needing GC: */
577 extern pthreadlist	_thread_gc_list __hidden;
578 
579 extern int		_thread_active_threads;
580 extern atfork_head	_thr_atfork_list __hidden;
581 extern struct umutex	_thr_atfork_lock __hidden;
582 
583 /* Default thread attributes: */
584 extern struct pthread_attr _pthread_attr_default __hidden;
585 
586 /* Default mutex attributes: */
587 extern struct pthread_mutex_attr _pthread_mutexattr_default __hidden;
588 
589 /* Default condition variable attributes: */
590 extern struct pthread_cond_attr _pthread_condattr_default __hidden;
591 
592 extern struct pthread_prio _thr_priorities[] __hidden;
593 
594 extern pid_t	_thr_pid __hidden;
595 extern int	_thr_is_smp __hidden;
596 
597 extern size_t	_thr_guard_default __hidden;
598 extern size_t	_thr_stack_default __hidden;
599 extern size_t	_thr_stack_initial __hidden;
600 extern int	_thr_page_size __hidden;
601 extern int	_thr_spinloops __hidden;
602 extern int	_thr_yieldloops __hidden;
603 
604 /* Garbage thread count. */
605 extern int	_gc_count __hidden;
606 
607 extern struct umutex	_mutex_static_lock __hidden;
608 extern struct umutex	_cond_static_lock __hidden;
609 extern struct umutex	_rwlock_static_lock __hidden;
610 extern struct umutex	_keytable_lock __hidden;
611 extern struct umutex	_thr_list_lock __hidden;
612 extern struct umutex	_thr_event_lock __hidden;
613 
614 /*
615  * Function prototype definitions.
616  */
617 __BEGIN_DECLS
618 int	_thr_setthreaded(int) __hidden;
619 int	_mutex_cv_lock(pthread_mutex_t *, int count) __hidden;
620 int	_mutex_cv_unlock(pthread_mutex_t *, int *count) __hidden;
621 int	_mutex_reinit(pthread_mutex_t *) __hidden;
622 void	_mutex_fork(struct pthread *curthread) __hidden;
623 void	_mutex_unlock_private(struct pthread *) __hidden;
624 void	_libpthread_init(struct pthread *) __hidden;
625 struct pthread *_thr_alloc(struct pthread *) __hidden;
626 void	_thread_exit(const char *, int, const char *) __hidden __dead2;
627 void	_thr_exit_cleanup(void) __hidden;
628 int	_thr_ref_add(struct pthread *, struct pthread *, int) __hidden;
629 void	_thr_ref_delete(struct pthread *, struct pthread *) __hidden;
630 void	_thr_ref_delete_unlocked(struct pthread *, struct pthread *) __hidden;
631 int	_thr_find_thread(struct pthread *, struct pthread *, int) __hidden;
632 void	_thr_rtld_init(void) __hidden;
633 void	_thr_rtld_fini(void) __hidden;
634 int	_thr_stack_alloc(struct pthread_attr *) __hidden;
635 void	_thr_stack_free(struct pthread_attr *) __hidden;
636 void	_thr_free(struct pthread *, struct pthread *) __hidden;
637 void	_thr_gc(struct pthread *) __hidden;
638 void    _thread_cleanupspecific(void) __hidden;
639 void    _thread_dump_info(void) __hidden;
640 void	_thread_printf(int, const char *, ...) __hidden;
641 void	_thr_spinlock_init(void) __hidden;
642 void	_thr_cancel_enter(struct pthread *) __hidden;
643 void	_thr_cancel_leave(struct pthread *) __hidden;
644 void	_thr_cancel_enter_defer(struct pthread *) __hidden;
645 void	_thr_cancel_leave_defer(struct pthread *, int) __hidden;
646 void	_thr_testcancel(struct pthread *) __hidden;
647 void	_thr_signal_block(struct pthread *) __hidden;
648 void	_thr_signal_unblock(struct pthread *) __hidden;
649 void	_thr_signal_init(void) __hidden;
650 void	_thr_signal_deinit(void) __hidden;
651 int	_thr_send_sig(struct pthread *, int sig) __hidden;
652 void	_thr_list_init(void) __hidden;
653 void	_thr_hash_add(struct pthread *) __hidden;
654 void	_thr_hash_remove(struct pthread *) __hidden;
655 struct pthread *_thr_hash_find(struct pthread *) __hidden;
656 void	_thr_link(struct pthread *, struct pthread *) __hidden;
657 void	_thr_unlink(struct pthread *, struct pthread *) __hidden;
658 void	_thr_suspend_check(struct pthread *) __hidden;
659 void	_thr_assert_lock_level(void) __hidden __dead2;
660 void	_thr_ast(struct pthread *) __hidden;
661 void	_thr_once_init(void) __hidden;
662 void	_thr_report_creation(struct pthread *curthread,
663 	    struct pthread *newthread) __hidden;
664 void	_thr_report_death(struct pthread *curthread) __hidden;
665 int	_thr_getscheduler(lwpid_t, int *, struct sched_param *) __hidden;
666 int	_thr_setscheduler(lwpid_t, int, const struct sched_param *) __hidden;
667 int	_rtp_to_schedparam(const struct rtprio *rtp, int *policy,
668 		struct sched_param *param) __hidden;
669 int	_schedparam_to_rtp(int policy, const struct sched_param *param,
670 		struct rtprio *rtp) __hidden;
671 void	_thread_bp_create(void);
672 void	_thread_bp_death(void);
673 int	_sched_yield(void);
674 int	_pthread_getaffinity_np(pthread_t, size_t, cpuset_t *);
675 int	_pthread_setaffinity_np(pthread_t, size_t, const cpuset_t *);
676 
677 /* #include <fcntl.h> */
678 #ifdef  _SYS_FCNTL_H_
679 int     __sys_fcntl(int, int, ...);
680 int     __sys_open(const char *, int, ...);
681 #endif
682 
683 /* #include <signal.h> */
684 #ifdef _SIGNAL_H_
685 int	__sys_kill(pid_t, int);
686 int     __sys_sigaction(int, const struct sigaction *, struct sigaction *);
687 int     __sys_sigpending(sigset_t *);
688 int     __sys_sigprocmask(int, const sigset_t *, sigset_t *);
689 int     __sys_sigsuspend(const sigset_t *);
690 int     __sys_sigreturn(ucontext_t *);
691 int     __sys_sigaltstack(const struct sigaltstack *, struct sigaltstack *);
692 int	__sys_sigwait(const sigset_t *, int *);
693 int	__sys_sigtimedwait(const sigset_t *, siginfo_t *,
694 		const struct timespec *);
695 int	__sys_sigwaitinfo(const sigset_t *set, siginfo_t *info);
696 #endif
697 
698 /* #include <time.h> */
699 #ifdef	_TIME_H_
700 int	__sys_nanosleep(const struct timespec *, struct timespec *);
701 #endif
702 
703 /* #include <unistd.h> */
704 #ifdef  _UNISTD_H_
705 int     __sys_close(int);
706 int	__sys_fork(void);
707 pid_t	__sys_getpid(void);
708 ssize_t __sys_read(int, void *, size_t);
709 ssize_t __sys_write(int, const void *, size_t);
710 void	__sys_exit(int);
711 #endif
712 
713 static inline int
714 _thr_isthreaded(void)
715 {
716 	return (__isthreaded != 0);
717 }
718 
719 static inline int
720 _thr_is_inited(void)
721 {
722 	return (_thr_initial != NULL);
723 }
724 
725 static inline void
726 _thr_check_init(void)
727 {
728 	if (_thr_initial == NULL)
729 		_libpthread_init(NULL);
730 }
731 
732 __END_DECLS
733 
734 #endif  /* !_THR_PRIVATE_H */
735