pthread_int.h revision 1.8 1 /* $NetBSD: pthread_int.h,v 1.8 2003/02/15 21:18:59 jdolecek Exp $ */
2
3 /*-
4 * Copyright (c) 2001 The NetBSD Foundation, Inc.
5 * All rights reserved.
6 *
7 * This code is derived from software contributed to The NetBSD Foundation
8 * by Nathan J. Williams.
9 *
10 * Redistribution and use in source and binary forms, with or without
11 * modification, are permitted provided that the following conditions
12 * are met:
13 * 1. Redistributions of source code must retain the above copyright
14 * notice, this list of conditions and the following disclaimer.
15 * 2. Redistributions in binary form must reproduce the above copyright
16 * notice, this list of conditions and the following disclaimer in the
17 * documentation and/or other materials provided with the distribution.
18 * 3. All advertising materials mentioning features or use of this software
19 * must display the following acknowledgement:
20 * This product includes software developed by the NetBSD
21 * Foundation, Inc. and its contributors.
22 * 4. Neither the name of The NetBSD Foundation nor the names of its
23 * contributors may be used to endorse or promote products derived
24 * from this software without specific prior written permission.
25 *
26 * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
27 * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
28 * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
29 * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
30 * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
31 * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
32 * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
33 * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
34 * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
35 * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
36 * POSSIBILITY OF SUCH DAMAGE.
37 */
38
39 #ifndef _LIB_PTHREAD_INT_H
40 #define _LIB_PTHREAD_INT_H
41
42 #define PTHREAD__DEBUG
43 #define ERRORCHECK
44
45 #include "pthread_types.h"
46 #include "pthread_queue.h"
47 #include "pthread_debug.h"
48 #include "pthread_md.h"
49
50 #include <sa.h>
51 #include <signal.h>
52
53 /*
54 * The size of this structure needs to be no larger than struct
55 * __pthread_cleanup_store, defined in pthread.h.
56 */
57 struct pt_clean_t {
58 PTQ_ENTRY(pt_clean_t) ptc_next;
59 void (*ptc_cleanup)(void *);
60 void *ptc_arg;
61 };
62
63 struct pt_alarm_t {
64 PTQ_ENTRY(pt_alarm_t) pta_next;
65 pthread_spin_t pta_lock;
66 const struct timespec *pta_time;
67 void (*pta_func)(void *);
68 void *pta_arg;
69 int pta_fired;
70 };
71
72 struct pthread_st {
73 unsigned int pt_magic;
74 /* Identifier, for debugging and for preventing recycling. */
75 int pt_num;
76
77 int pt_type; /* normal, upcall, or idle */
78 int pt_state; /* running, blocked, etc. */
79 pthread_spin_t pt_statelock; /* lock on pt_state */
80 int pt_flags; /* see PT_FLAG_* below */
81 int pt_cancel; /* Deferred cancellation */
82 int pt_spinlocks; /* Number of spinlocks held. */
83 int pt_blockedlwp; /* LWP/SA number when blocked */
84
85 int pt_errno; /* Thread-specific errno. */
86
87 /* Entry on the run queue */
88 PTQ_ENTRY(pthread_st) pt_runq;
89 /* Entry on the list of all threads */
90 PTQ_ENTRY(pthread_st) pt_allq;
91 /* Entry on the sleep queue (xxx should be same as run queue?) */
92 PTQ_ENTRY(pthread_st) pt_sleep;
93 /* Object we're sleeping on */
94 void *pt_sleepobj;
95 /* Queue we're sleeping on */
96 struct pthread_queue_t *pt_sleepq;
97 /* Lock protecting that queue */
98 pthread_spin_t *pt_sleeplock;
99
100 stack_t pt_stack; /* Our stack */
101 ucontext_t *pt_uc; /* Saved context when we're stopped */
102
103 sigset_t pt_sigmask; /* Signals we won't take. */
104 sigset_t pt_siglist; /* Signals pending for us. */
105 sigset_t pt_sigblocked; /* Signals delivered while blocked. */
106 sigset_t *pt_sigwait; /* Signals waited for in sigwait */
107 siginfo_t *pt_wsig;
108 pthread_spin_t pt_siglock; /* Lock on above */
109
110 void * pt_exitval; /* Read by pthread_join() */
111
112 /* Stack of cancellation cleanup handlers and their arguments */
113 PTQ_HEAD(, pt_clean_t) pt_cleanup_stack;
114
115 /* Other threads trying to pthread_join() us. */
116 struct pthread_queue_t pt_joiners;
117 /* Lock for above, and for changing pt_state to ZOMBIE or DEAD,
118 * and for setting the DETACHED flag
119 */
120 pthread_spin_t pt_join_lock;
121
122 /* Thread we were going to switch to before we were preempted
123 * ourselves. Will be used by the upcall that's continuing us.
124 */
125 pthread_t pt_switchto;
126 ucontext_t* pt_switchtouc;
127
128 /* The context we saved in pthread__locked_switch but which
129 * was trashed when we were preempted before switching stacks.
130 */
131 ucontext_t* pt_sleepuc;
132
133 /* Threads that are preempted with spinlocks held will be
134 * continued until they unlock their spinlock. When they do
135 * so, they should jump ship to the thread pointed to by
136 * pt_next.
137 */
138 pthread_t pt_next;
139
140 /* The upcall that is continuing this thread */
141 pthread_t pt_parent;
142
143 /* A queue lock that this thread held while trying to
144 * context switch to another process.
145 */
146 pthread_spin_t* pt_heldlock;
147
148 /* Thread-specific data */
149 void* pt_specific[PTHREAD_KEYS_MAX];
150
151 #ifdef PTHREAD__DEBUG
152 int blocks;
153 int preempts;
154 int rescheds;
155 #endif
156 };
157
158 struct pthread_lock_ops {
159 void (*plo_init)(__cpu_simple_lock_t *);
160 int (*plo_try)(__cpu_simple_lock_t *);
161 void (*plo_unlock)(__cpu_simple_lock_t *);
162 };
163
164 /* Thread types */
165 #define PT_THREAD_NORMAL 1
166 #define PT_THREAD_UPCALL 2
167 #define PT_THREAD_IDLE 3
168
169 /* Thread states */
170 #define PT_STATE_RUNNING 1
171 #define PT_STATE_RUNNABLE 2
172 #define PT_STATE_BLOCKED_SYS 3
173 #define PT_STATE_BLOCKED_QUEUE 4
174 #define PT_STATE_ZOMBIE 5
175 #define PT_STATE_DEAD 6
176 #define PT_STATE_RECYCLABLE 7
177
178 /* Flag values */
179
180 #define PT_FLAG_DETACHED 0x0001
181 #define PT_FLAG_IDLED 0x0002
182 #define PT_FLAG_CS_DISABLED 0x0004 /* Cancellation disabled */
183 #define PT_FLAG_CS_ASYNC 0x0008 /* Cancellation is async */
184 #define PT_FLAG_CS_PENDING 0x0010
185 #define PT_FLAG_SIGDEFERRED 0x0020 /* There are signals to take */
186
187 #define PT_MAGIC 0x11110001
188 #define PT_DEAD 0xDEAD0001
189
190 #define PT_ATTR_MAGIC 0x22220002
191 #define PT_ATTR_DEAD 0xDEAD0002
192
193 #define PT_STACKSIZE (1<<18)
194 #define PT_STACKMASK (PT_STACKSIZE-1)
195
196 #define PT_UPCALLSTACKS 16
197
198 #define PT_ALARMTIMER_MAGIC 0x88880010
199 #define PT_RRTIMER_MAGIC 0x88880020
200 #define NIDLETHREADS 4
201 #define IDLESPINS 1000
202
203 /* Flag to be used in a ucontext_t's uc_flags indicating that
204 * the saved register state is "user" state only, not full
205 * trap state.
206 */
207 #define _UC_USER_BIT 30
208 #define _UC_USER (1LU << _UC_USER_BIT)
209
210 void pthread_init(void) __attribute__ ((__constructor__));
211
212 /* Utility functions */
213
214 /* Set up/clean up a thread's basic state. */
215 void pthread__initthread(pthread_t self, pthread_t t);
216
217 /* Go do something else. Don't go back on the run queue */
218 void pthread__block(pthread_t self, pthread_spin_t* queuelock);
219 /* Put a thread back on the run queue */
220 void pthread__sched(pthread_t self, pthread_t thread);
221 void pthread__sched_sleepers(pthread_t self, struct pthread_queue_t *threadq);
222 void pthread__sched_idle(pthread_t self, pthread_t thread);
223 void pthread__sched_idle2(pthread_t self);
224
225 void pthread__sched_bulk(pthread_t self, pthread_t qhead);
226
227 void pthread__idle(void);
228
229 /* Get the next thread */
230 pthread_t pthread__next(pthread_t self);
231
232 int pthread__stackalloc(pthread_t *t);
233 void pthread__initmain(pthread_t *t);
234
235 void pthread__sa_start(void);
236 void pthread__sa_recycle(pthread_t old, pthread_t new);
237
238 /* Alarm code */
239 void pthread__alarm_init(void);
240 void pthread__alarm_add(pthread_t, struct pt_alarm_t *,
241 const struct timespec *, void (*)(void *), void *);
242 void pthread__alarm_del(pthread_t, struct pt_alarm_t *);
243 int pthread__alarm_fired(struct pt_alarm_t *);
244 void pthread__alarm_process(pthread_t self, void *arg);
245
246 /* Internal locking primitives */
247 void pthread__lockprim_init(void);
248 void pthread_lockinit(pthread_spin_t *lock);
249 void pthread_spinlock(pthread_t thread, pthread_spin_t *lock);
250 int pthread_spintrylock(pthread_t thread, pthread_spin_t *lock);
251 void pthread_spinunlock(pthread_t thread, pthread_spin_t *lock);
252
253 extern const struct pthread_lock_ops *pthread__lock_ops;
254
255 #define pthread__simple_lock_init(alp) (*pthread__lock_ops->plo_init)(alp)
256 #define pthread__simple_lock_try(alp) (*pthread__lock_ops->plo_try)(alp)
257 #define pthread__simple_unlock(alp) (*pthread__lock_ops->plo_unlock)(alp)
258
259 #ifndef _getcontext_u
260 int _getcontext_u(ucontext_t *);
261 #endif
262 #ifndef _setcontext_u
263 int _setcontext_u(const ucontext_t *);
264 #endif
265 #ifndef _swapcontext_u
266 int _swapcontext_u(ucontext_t *, const ucontext_t *);
267 #endif
268
269 void pthread__testcancel(pthread_t self);
270 int pthread__find(pthread_t self, pthread_t target);
271
272 #ifndef PTHREAD_MD_INIT
273 #define PTHREAD_MD_INIT
274 #endif
275
276 #ifndef _INITCONTEXT_U_MD
277 #define _INITCONTEXT_U_MD(ucp)
278 #endif
279
280 #define _INITCONTEXT_U(ucp) do { \
281 (ucp)->uc_flags = _UC_CPU | _UC_STACK; \
282 _INITCONTEXT_U_MD(ucp) \
283 } while (/*CONSTCOND*/0)
284
285 #ifdef __PTHREAD_SIGNAL_PRIVATE
286
287 /*
288 * Macros for converting from ucontext to sigcontext and vice-versa.
289 * Note that going from sigcontext->ucontext is only safe for a
290 * sigcontext that was first created from a ucontext.
291 *
292 * Arch-specific code can override this, if necessary. It may also
293 * be necessary for arch-specific code to include extra info along with
294 * the sigcontext.
295 */
296 #ifndef PTHREAD_SIGCONTEXT_EXTRA
297 #define PTHREAD_SIGCONTEXT_EXTRA
298 #endif
299
300 struct pthread__sigcontext {
301 struct sigcontext psc_context;
302 PTHREAD_SIGCONTEXT_EXTRA
303 };
304
305 #ifndef PTHREAD_UCONTEXT_TO_SIGCONTEXT
306 #define PTHREAD_UCONTEXT_TO_SIGCONTEXT(mask, uc, psc) \
307 do { \
308 (uc)->uc_sigmask = *(mask); \
309 /* \
310 * XXX We may want to check for _UC_USER here and do a \
311 * XXX _INITCONTEXT_U_MD() and clearing _UC_USER on such \
312 * XXX contexts before converting to a signcontext, thus \
313 * XXX allowing signal handlers to modify the non-_UC_USER \
314 * XXX registers. Hazy territory; ignore it for now. \
315 */ \
316 _UCONTEXT_TO_SIGCONTEXT((uc), &(psc)->psc_context); \
317 } while (/*CONSTCOND*/0)
318
319 #define PTHREAD_SIGCONTEXT_TO_UCONTEXT(psc, uc) \
320 do { \
321 _SIGCONTEXT_TO_UCONTEXT(&(psc)->psc_context, (uc)); \
322 (uc)->uc_flags &= ~_UC_SIGMASK; \
323 } while (/*CONSTCOND*/0)
324 #else
325 void pthread__ucontext_to_sigcontext(const sigset_t *, ucontext_t *,
326 struct pthread__sigcontext *);
327 void pthread__sigcontext_to_ucontext(const struct pthread__sigcontext *,
328 ucontext_t *);
329 #endif /* PTHREAD_UCONTEXT_TO_SIGCONTEXT */
330
331 #endif /* __PTHREAD_SIGNAL_PRIVATE */
332
333 /* Stack location of pointer to a particular thread */
334 #define pthread__id(sp) \
335 ((pthread_t) (((vaddr_t)(sp)) & ~PT_STACKMASK))
336
337 #define pthread__self() (pthread__id(pthread__sp()))
338
339 #define pthread__assert(e) \
340 ((e) ? __static_cast(void,0) : \
341 pthread__assertfunc(__FILE__, __LINE__, __func__, #e))
342
343
344 /* These three routines are defined in processor-specific code. */
345 void pthread__upcall_switch(pthread_t self, pthread_t next);
346 void pthread__switch(pthread_t self, pthread_t next);
347 void pthread__locked_switch(pthread_t self, pthread_t next,
348 pthread_spin_t *lock);
349
350 void pthread__signal_init(void);
351
352 void pthread__signal(pthread_t self, pthread_t t, int sig, int code);
353 void pthread__deliver_signal(pthread_t self, pthread_t t, int sig, int code);
354 void pthread__signal_deferred(pthread_t self, pthread_t t);
355
356 void pthread__destroy_tsd(pthread_t self);
357 void pthread__assertfunc(char *file, int line, char *function, char *expr);
358
359 #endif /* _LIB_PTHREAD_INT_H */
360