2 Unix SMB/CIFS implementation.
4 common events code for signal events
6 Copyright (C) Andrew Tridgell 2007
8 ** NOTE! The following LGPL license applies to the tevent
9 ** library. This does NOT imply that all of Samba is released
12 This library is free software; you can redistribute it and/or
13 modify it under the terms of the GNU Lesser General Public
14 License as published by the Free Software Foundation; either
15 version 3 of the License, or (at your option) any later version.
17 This library is distributed in the hope that it will be useful,
18 but WITHOUT ANY WARRANTY; without even the implied warranty of
19 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
20 Lesser General Public License for more details.
22 You should have received a copy of the GNU Lesser General Public
23 License along with this library; if not, see <http://www.gnu.org/licenses/>.
27 #include "system/filesys.h"
28 #include "system/wait.h"
30 #include "tevent_internal.h"
31 #include "tevent_util.h"
33 /* maximum number of SA_SIGINFO signals to hold in the queue.
34 NB. This *MUST* be a power of 2, in order for the ring buffer
35 wrap to work correctly. Thanks to Petr Vandrovec <petr@vandrovec.name>
38 #define TEVENT_SA_INFO_QUEUE_COUNT 256
40 size_t tevent_num_signals(void)
42 return TEVENT_NUM_SIGNALS
;
45 size_t tevent_sa_info_queue_count(void)
47 return TEVENT_SA_INFO_QUEUE_COUNT
;
50 struct tevent_sigcounter
{
55 #if defined(HAVE___SYNC_FETCH_AND_ADD)
56 #define TEVENT_SIG_INCREMENT(s) __sync_fetch_and_add(&((s).count), 1)
57 #elif defined(HAVE_ATOMIC_ADD_32)
58 #define TEVENT_SIG_INCREMENT(s) atomic_add_32(&((s).count), 1)
60 #define TEVENT_SIG_INCREMENT(s) (s).count++
62 #define TEVENT_SIG_SEEN(s, n) (s).seen += (n)
63 #define TEVENT_SIG_PENDING(s) ((s).seen != (s).count)
65 struct tevent_common_signal_list
{
66 struct tevent_common_signal_list
*prev
, *next
;
67 struct tevent_signal
*se
;
71 the poor design of signals means that this table must be static global
73 static struct tevent_sig_state
{
74 struct tevent_common_signal_list
*sig_handlers
[TEVENT_NUM_SIGNALS
+1];
75 struct sigaction
*oldact
[TEVENT_NUM_SIGNALS
+1];
76 struct tevent_sigcounter signal_count
[TEVENT_NUM_SIGNALS
+1];
77 struct tevent_sigcounter got_signal
;
79 /* with SA_SIGINFO we get quite a lot of info per signal */
80 siginfo_t
*sig_info
[TEVENT_NUM_SIGNALS
+1];
81 struct tevent_sigcounter sig_blocked
[TEVENT_NUM_SIGNALS
+1];
86 return number of sigcounter events not processed yet
88 static uint32_t tevent_sig_count(struct tevent_sigcounter s
)
90 return s
.count
- s
.seen
;
94 signal handler - redirects to registered signals
96 static void tevent_common_signal_handler(int signum
)
98 struct tevent_common_signal_list
*sl
;
99 struct tevent_context
*ev
= NULL
;
100 int saved_errno
= errno
;
102 TEVENT_SIG_INCREMENT(sig_state
->signal_count
[signum
]);
103 TEVENT_SIG_INCREMENT(sig_state
->got_signal
);
105 /* Write to each unique event context. */
106 for (sl
= sig_state
->sig_handlers
[signum
]; sl
; sl
= sl
->next
) {
107 if (sl
->se
->event_ctx
&& sl
->se
->event_ctx
!= ev
) {
108 ev
= sl
->se
->event_ctx
;
109 tevent_common_wakeup(ev
);
118 signal handler with SA_SIGINFO - redirects to registered signals
120 static void tevent_common_signal_handler_info(int signum
, siginfo_t
*info
,
123 uint32_t count
= tevent_sig_count(sig_state
->signal_count
[signum
]);
124 /* sig_state->signal_count[signum].seen % TEVENT_SA_INFO_QUEUE_COUNT
125 * is the base of the unprocessed signals in the ringbuffer. */
126 uint32_t ofs
= (sig_state
->signal_count
[signum
].seen
+ count
) %
127 TEVENT_SA_INFO_QUEUE_COUNT
;
128 sig_state
->sig_info
[signum
][ofs
] = *info
;
130 tevent_common_signal_handler(signum
);
132 /* handle SA_SIGINFO */
133 if (count
+1 == TEVENT_SA_INFO_QUEUE_COUNT
) {
134 /* we've filled the info array - block this signal until
135 these ones are delivered */
136 #ifdef HAVE_UCONTEXT_T
138 * This is the only way for this to work.
139 * By default signum is blocked inside this
140 * signal handler using a temporary mask,
141 * but what we really need to do now is
142 * block it in the callers mask, so it
143 * stays blocked when the temporary signal
144 * handler mask is replaced when we return
145 * from here. The callers mask can be found
146 * in the ucontext_t passed in as the
147 * void *uctx argument.
149 ucontext_t
*ucp
= (ucontext_t
*)uctx
;
150 sigaddset(&ucp
->uc_sigmask
, signum
);
153 * WARNING !!! WARNING !!!!
155 * This code doesn't work.
156 * By default signum is blocked inside this
157 * signal handler, but calling sigprocmask
158 * modifies the temporary signal mask being
159 * used *inside* this handler, which will be
160 * replaced by the callers signal mask once
161 * we return from here. See Samba
162 * bug #9550 for details.
166 sigaddset(&set
, signum
);
167 sigprocmask(SIG_BLOCK
, &set
, NULL
);
169 TEVENT_SIG_INCREMENT(sig_state
->sig_blocked
[signum
]);
174 static int tevent_common_signal_list_destructor(struct tevent_common_signal_list
*sl
)
176 if (sig_state
->sig_handlers
[sl
->se
->signum
]) {
177 DLIST_REMOVE(sig_state
->sig_handlers
[sl
->se
->signum
], sl
);
183 destroy a signal event
185 static int tevent_signal_destructor(struct tevent_signal
*se
)
187 struct tevent_common_signal_list
*sl
=
188 talloc_get_type_abort(se
->additional_data
,
189 struct tevent_common_signal_list
);
192 struct tevent_context
*ev
= se
->event_ctx
;
194 DLIST_REMOVE(ev
->signal_events
, se
);
199 if (sig_state
->sig_handlers
[se
->signum
] == NULL
) {
200 /* restore old handler, if any */
201 if (sig_state
->oldact
[se
->signum
]) {
202 sigaction(se
->signum
, sig_state
->oldact
[se
->signum
], NULL
);
203 talloc_free(sig_state
->oldact
[se
->signum
]);
204 sig_state
->oldact
[se
->signum
] = NULL
;
207 if (se
->sa_flags
& SA_SIGINFO
) {
208 if (sig_state
->sig_info
[se
->signum
]) {
209 talloc_free(sig_state
->sig_info
[se
->signum
]);
210 sig_state
->sig_info
[se
->signum
] = NULL
;
221 return NULL on failure (memory allocation error)
223 struct tevent_signal
*tevent_common_add_signal(struct tevent_context
*ev
,
227 tevent_signal_handler_t handler
,
229 const char *handler_name
,
230 const char *location
)
232 struct tevent_signal
*se
;
233 struct tevent_common_signal_list
*sl
;
234 sigset_t set
, oldset
;
237 ret
= tevent_common_wakeup_init(ev
);
243 if (signum
>= TEVENT_NUM_SIGNALS
) {
248 /* the sig_state needs to be on a global context as it can last across
249 multiple event contexts */
250 if (sig_state
== NULL
) {
251 sig_state
= talloc_zero(NULL
, struct tevent_sig_state
);
252 if (sig_state
== NULL
) {
257 se
= talloc(mem_ctx
?mem_ctx
:ev
, struct tevent_signal
);
258 if (se
== NULL
) return NULL
;
262 se
->sa_flags
= sa_flags
;
263 se
->handler
= handler
;
264 se
->private_data
= private_data
;
265 se
->handler_name
= handler_name
;
266 se
->location
= location
;
267 se
->additional_data
= NULL
;
269 sl
= talloc(se
, struct tevent_common_signal_list
);
275 se
->additional_data
= sl
;
277 /* Ensure, no matter the destruction order, that we always have a handle on the global sig_state */
278 if (!talloc_reference(se
, sig_state
)) {
283 /* only install a signal handler if not already installed */
284 if (sig_state
->sig_handlers
[signum
] == NULL
) {
285 struct sigaction act
;
287 act
.sa_handler
= tevent_common_signal_handler
;
288 act
.sa_flags
= sa_flags
;
290 if (sa_flags
& SA_SIGINFO
) {
291 act
.sa_handler
= NULL
;
292 act
.sa_sigaction
= tevent_common_signal_handler_info
;
293 if (sig_state
->sig_info
[signum
] == NULL
) {
294 sig_state
->sig_info
[signum
] =
295 talloc_zero_array(sig_state
, siginfo_t
,
296 TEVENT_SA_INFO_QUEUE_COUNT
);
297 if (sig_state
->sig_info
[signum
] == NULL
) {
304 sig_state
->oldact
[signum
] = talloc(sig_state
, struct sigaction
);
305 if (sig_state
->oldact
[signum
] == NULL
) {
309 if (sigaction(signum
, &act
, sig_state
->oldact
[signum
]) == -1) {
310 talloc_free(sig_state
->oldact
[signum
]);
311 sig_state
->oldact
[signum
] = NULL
;
317 DLIST_ADD(se
->event_ctx
->signal_events
, se
);
319 /* Make sure the signal doesn't come in while we're mangling list. */
321 sigaddset(&set
, signum
);
322 sigprocmask(SIG_BLOCK
, &set
, &oldset
);
323 DLIST_ADD(sig_state
->sig_handlers
[signum
], sl
);
324 sigprocmask(SIG_SETMASK
, &oldset
, NULL
);
326 talloc_set_destructor(se
, tevent_signal_destructor
);
327 talloc_set_destructor(sl
, tevent_common_signal_list_destructor
);
332 struct tevent_se_exists
{
333 struct tevent_se_exists
**myself
;
336 static int tevent_se_exists_destructor(struct tevent_se_exists
*s
)
343 check if a signal is pending
344 return != 0 if a signal was pending
346 int tevent_common_check_signal(struct tevent_context
*ev
)
350 if (!sig_state
|| !TEVENT_SIG_PENDING(sig_state
->got_signal
)) {
354 for (i
=0;i
<TEVENT_NUM_SIGNALS
+1;i
++) {
355 struct tevent_common_signal_list
*sl
, *next
;
356 struct tevent_sigcounter counter
= sig_state
->signal_count
[i
];
357 uint32_t count
= tevent_sig_count(counter
);
359 /* Ensure we null out any stored siginfo_t entries
360 * after processing for debugging purposes. */
361 bool clear_processed_siginfo
= false;
367 for (sl
=sig_state
->sig_handlers
[i
];sl
;sl
=next
) {
368 struct tevent_signal
*se
= sl
->se
;
369 struct tevent_se_exists
*exists
;
374 * We have to be careful to not touch "se"
375 * after it was deleted in its handler. Thus
376 * we allocate a child whose destructor will
377 * tell by nulling out itself that its parent
380 exists
= talloc(se
, struct tevent_se_exists
);
381 if (exists
== NULL
) {
384 exists
->myself
= &exists
;
385 talloc_set_destructor(
386 exists
, tevent_se_exists_destructor
);
389 if (se
->sa_flags
& SA_SIGINFO
) {
392 clear_processed_siginfo
= true;
394 for (j
=0;j
<count
;j
++) {
395 /* sig_state->signal_count[i].seen
396 * % TEVENT_SA_INFO_QUEUE_COUNT is
397 * the base position of the unprocessed
398 * signals in the ringbuffer. */
399 uint32_t ofs
= (counter
.seen
+ j
)
400 % TEVENT_SA_INFO_QUEUE_COUNT
;
401 se
->handler(ev
, se
, i
, 1,
402 (void*)&sig_state
->sig_info
[i
][ofs
],
409 if (exists
&& (se
->sa_flags
& SA_RESETHAND
)) {
417 se
->handler(ev
, se
, i
, count
, NULL
, se
->private_data
);
419 if (exists
&& (se
->sa_flags
& SA_RESETHAND
)) {
427 if (clear_processed_siginfo
&& sig_state
->sig_info
[i
] != NULL
) {
429 for (j
=0;j
<count
;j
++) {
430 uint32_t ofs
= (counter
.seen
+ j
)
431 % TEVENT_SA_INFO_QUEUE_COUNT
;
432 memset((void*)&sig_state
->sig_info
[i
][ofs
],
439 TEVENT_SIG_SEEN(sig_state
->signal_count
[i
], count
);
440 TEVENT_SIG_SEEN(sig_state
->got_signal
, count
);
443 if (TEVENT_SIG_PENDING(sig_state
->sig_blocked
[i
])) {
444 /* We'd filled the queue, unblock the
445 signal now the queue is empty again.
446 Note we MUST do this after the
447 TEVENT_SIG_SEEN(sig_state->signal_count[i], count)
448 call to prevent a new signal running
449 out of room in the sig_state->sig_info[i][]
454 TEVENT_SIG_SEEN(sig_state
->sig_blocked
[i
],
455 tevent_sig_count(sig_state
->sig_blocked
[i
]));
456 sigprocmask(SIG_UNBLOCK
, &set
, NULL
);
464 void tevent_cleanup_pending_signal_handlers(struct tevent_signal
*se
)
466 struct tevent_common_signal_list
*sl
=
467 talloc_get_type_abort(se
->additional_data
,
468 struct tevent_common_signal_list
);
470 tevent_common_signal_list_destructor(sl
);
472 if (sig_state
->sig_handlers
[se
->signum
] == NULL
) {
473 if (sig_state
->oldact
[se
->signum
]) {
474 sigaction(se
->signum
, sig_state
->oldact
[se
->signum
], NULL
);
475 talloc_free(sig_state
->oldact
[se
->signum
]);
476 sig_state
->oldact
[se
->signum
] = NULL
;