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Commit | Line | Data |
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db1a4972 PB |
1 | /* |
2 | * QEMU System Emulator | |
3 | * | |
4 | * Copyright (c) 2003-2008 Fabrice Bellard | |
5 | * | |
6 | * Permission is hereby granted, free of charge, to any person obtaining a copy | |
7 | * of this software and associated documentation files (the "Software"), to deal | |
8 | * in the Software without restriction, including without limitation the rights | |
9 | * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell | |
10 | * copies of the Software, and to permit persons to whom the Software is | |
11 | * furnished to do so, subject to the following conditions: | |
12 | * | |
13 | * The above copyright notice and this permission notice shall be included in | |
14 | * all copies or substantial portions of the Software. | |
15 | * | |
16 | * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR | |
17 | * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, | |
18 | * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL | |
19 | * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER | |
20 | * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, | |
21 | * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN | |
22 | * THE SOFTWARE. | |
23 | */ | |
24 | ||
d38ea87a | 25 | #include "qemu/osdep.h" |
1ac0206b | 26 | #include "qemu/main-loop.h" |
1de7afc9 | 27 | #include "qemu/timer.h" |
8eda206e | 28 | #include "sysemu/replay.h" |
d2528bdc | 29 | #include "sysemu/cpus.h" |
1ac0206b | 30 | |
30ea8339 AL |
31 | #ifdef CONFIG_POSIX |
32 | #include <pthread.h> | |
33 | #endif | |
bff9f8bf | 34 | |
4e0c6529 AB |
35 | #ifdef CONFIG_PPOLL |
36 | #include <poll.h> | |
37 | #endif | |
38 | ||
cd758dd0 AB |
39 | #ifdef CONFIG_PRCTL_PR_SET_TIMERSLACK |
40 | #include <sys/prctl.h> | |
41 | #endif | |
42 | ||
db1a4972 PB |
43 | /***********************************************************/ |
44 | /* timers */ | |
45 | ||
b4049b74 | 46 | typedef struct QEMUClock { |
3c053411 | 47 | /* We rely on BQL to protect the timerlists */ |
ff83c66e | 48 | QLIST_HEAD(, QEMUTimerList) timerlists; |
691a0c9c | 49 | |
ff83c66e | 50 | QEMUClockType type; |
9a14b298 | 51 | bool enabled; |
b4049b74 | 52 | } QEMUClock; |
db1a4972 | 53 | |
754d6a54 | 54 | QEMUTimerListGroup main_loop_tlg; |
fbdb664c | 55 | static QEMUClock qemu_clocks[QEMU_CLOCK_MAX]; |
ff83c66e AB |
56 | |
57 | /* A QEMUTimerList is a list of timers attached to a clock. More | |
58 | * than one QEMUTimerList can be attached to each clock, for instance | |
59 | * used by different AioContexts / threads. Each clock also has | |
60 | * a list of the QEMUTimerLists associated with it, in order that | |
61 | * reenabling the clock can call all the notifiers. | |
62 | */ | |
63 | ||
64 | struct QEMUTimerList { | |
9a14b298 | 65 | QEMUClock *clock; |
978f2205 | 66 | QemuMutex active_timers_lock; |
ff83c66e AB |
67 | QEMUTimer *active_timers; |
68 | QLIST_ENTRY(QEMUTimerList) list; | |
d5541d86 AB |
69 | QEMUTimerListNotifyCB *notify_cb; |
70 | void *notify_opaque; | |
3c053411 LPF |
71 | |
72 | /* lightweight method to mark the end of timerlist's running */ | |
73 | QemuEvent timers_done_ev; | |
db1a4972 PB |
74 | }; |
75 | ||
7bf8fbde AB |
76 | /** |
77 | * qemu_clock_ptr: | |
78 | * @type: type of clock | |
79 | * | |
80 | * Translate a clock type into a pointer to QEMUClock object. | |
81 | * | |
82 | * Returns: a pointer to the QEMUClock object | |
83 | */ | |
b4049b74 | 84 | static inline QEMUClock *qemu_clock_ptr(QEMUClockType type) |
7bf8fbde AB |
85 | { |
86 | return &qemu_clocks[type]; | |
87 | } | |
88 | ||
e93379b0 | 89 | static bool timer_expired_ns(QEMUTimer *timer_head, int64_t current_time) |
45c7b37f SW |
90 | { |
91 | return timer_head && (timer_head->expire_time <= current_time); | |
92 | } | |
93 | ||
7bf8fbde AB |
94 | QEMUTimerList *timerlist_new(QEMUClockType type, |
95 | QEMUTimerListNotifyCB *cb, | |
96 | void *opaque) | |
ff83c66e AB |
97 | { |
98 | QEMUTimerList *timer_list; | |
7bf8fbde | 99 | QEMUClock *clock = qemu_clock_ptr(type); |
ff83c66e AB |
100 | |
101 | timer_list = g_malloc0(sizeof(QEMUTimerList)); | |
e4efd8a4 | 102 | qemu_event_init(&timer_list->timers_done_ev, true); |
ff83c66e | 103 | timer_list->clock = clock; |
d5541d86 AB |
104 | timer_list->notify_cb = cb; |
105 | timer_list->notify_opaque = opaque; | |
978f2205 | 106 | qemu_mutex_init(&timer_list->active_timers_lock); |
ff83c66e AB |
107 | QLIST_INSERT_HEAD(&clock->timerlists, timer_list, list); |
108 | return timer_list; | |
109 | } | |
110 | ||
ff83c66e AB |
111 | void timerlist_free(QEMUTimerList *timer_list) |
112 | { | |
113 | assert(!timerlist_has_timers(timer_list)); | |
114 | if (timer_list->clock) { | |
115 | QLIST_REMOVE(timer_list, list); | |
ff83c66e | 116 | } |
978f2205 | 117 | qemu_mutex_destroy(&timer_list->active_timers_lock); |
ff83c66e AB |
118 | g_free(timer_list); |
119 | } | |
120 | ||
3f53bc61 | 121 | static void qemu_clock_init(QEMUClockType type, QEMUTimerListNotifyCB *notify_cb) |
db1a4972 | 122 | { |
7bf8fbde | 123 | QEMUClock *clock = qemu_clock_ptr(type); |
691a0c9c | 124 | |
02ce232c KB |
125 | /* Assert that the clock of type TYPE has not been initialized yet. */ |
126 | assert(main_loop_tlg.tl[type] == NULL); | |
127 | ||
db1a4972 | 128 | clock->type = type; |
3fdd0ee3 | 129 | clock->enabled = (type == QEMU_CLOCK_VIRTUAL ? false : true); |
ff83c66e | 130 | QLIST_INIT(&clock->timerlists); |
3f53bc61 | 131 | main_loop_tlg.tl[type] = timerlist_new(type, notify_cb, NULL); |
db1a4972 PB |
132 | } |
133 | ||
40daca54 | 134 | bool qemu_clock_use_for_deadline(QEMUClockType type) |
ff83c66e | 135 | { |
40daca54 | 136 | return !(use_icount && (type == QEMU_CLOCK_VIRTUAL)); |
ff83c66e AB |
137 | } |
138 | ||
40daca54 | 139 | void qemu_clock_notify(QEMUClockType type) |
b1bbfe72 AB |
140 | { |
141 | QEMUTimerList *timer_list; | |
40daca54 | 142 | QEMUClock *clock = qemu_clock_ptr(type); |
b1bbfe72 AB |
143 | QLIST_FOREACH(timer_list, &clock->timerlists, list) { |
144 | timerlist_notify(timer_list); | |
145 | } | |
146 | } | |
147 | ||
3c053411 LPF |
148 | /* Disabling the clock will wait for related timerlists to stop |
149 | * executing qemu_run_timers. Thus, this functions should not | |
150 | * be used from the callback of a timer that is based on @clock. | |
151 | * Doing so would cause a deadlock. | |
152 | * | |
153 | * Caller should hold BQL. | |
154 | */ | |
40daca54 | 155 | void qemu_clock_enable(QEMUClockType type, bool enabled) |
db1a4972 | 156 | { |
40daca54 | 157 | QEMUClock *clock = qemu_clock_ptr(type); |
3c053411 | 158 | QEMUTimerList *tl; |
fbdc14eb | 159 | bool old = clock->enabled; |
db1a4972 | 160 | clock->enabled = enabled; |
fbdc14eb | 161 | if (enabled && !old) { |
40daca54 | 162 | qemu_clock_notify(type); |
3c053411 LPF |
163 | } else if (!enabled && old) { |
164 | QLIST_FOREACH(tl, &clock->timerlists, list) { | |
165 | qemu_event_wait(&tl->timers_done_ev); | |
166 | } | |
fbdc14eb | 167 | } |
db1a4972 PB |
168 | } |
169 | ||
ff83c66e | 170 | bool timerlist_has_timers(QEMUTimerList *timer_list) |
dc2dfcf0 | 171 | { |
8caa05d8 | 172 | return !!atomic_read(&timer_list->active_timers); |
dc2dfcf0 PB |
173 | } |
174 | ||
40daca54 | 175 | bool qemu_clock_has_timers(QEMUClockType type) |
dc2dfcf0 | 176 | { |
40daca54 | 177 | return timerlist_has_timers( |
7bf8fbde | 178 | main_loop_tlg.tl[type]); |
dc2dfcf0 PB |
179 | } |
180 | ||
ff83c66e AB |
181 | bool timerlist_expired(QEMUTimerList *timer_list) |
182 | { | |
978f2205 SH |
183 | int64_t expire_time; |
184 | ||
8caa05d8 PB |
185 | if (!atomic_read(&timer_list->active_timers)) { |
186 | return false; | |
187 | } | |
188 | ||
978f2205 SH |
189 | qemu_mutex_lock(&timer_list->active_timers_lock); |
190 | if (!timer_list->active_timers) { | |
191 | qemu_mutex_unlock(&timer_list->active_timers_lock); | |
192 | return false; | |
193 | } | |
194 | expire_time = timer_list->active_timers->expire_time; | |
195 | qemu_mutex_unlock(&timer_list->active_timers_lock); | |
196 | ||
33bef0b9 | 197 | return expire_time <= qemu_clock_get_ns(timer_list->clock->type); |
ff83c66e AB |
198 | } |
199 | ||
40daca54 | 200 | bool qemu_clock_expired(QEMUClockType type) |
ff83c66e | 201 | { |
40daca54 | 202 | return timerlist_expired( |
7bf8fbde | 203 | main_loop_tlg.tl[type]); |
ff83c66e AB |
204 | } |
205 | ||
02a03a9f AB |
206 | /* |
207 | * As above, but return -1 for no deadline, and do not cap to 2^32 | |
208 | * as we know the result is always positive. | |
209 | */ | |
210 | ||
ff83c66e | 211 | int64_t timerlist_deadline_ns(QEMUTimerList *timer_list) |
02a03a9f AB |
212 | { |
213 | int64_t delta; | |
978f2205 | 214 | int64_t expire_time; |
02a03a9f | 215 | |
8caa05d8 PB |
216 | if (!atomic_read(&timer_list->active_timers)) { |
217 | return -1; | |
218 | } | |
219 | ||
978f2205 | 220 | if (!timer_list->clock->enabled) { |
02a03a9f AB |
221 | return -1; |
222 | } | |
223 | ||
978f2205 SH |
224 | /* The active timers list may be modified before the caller uses our return |
225 | * value but ->notify_cb() is called when the deadline changes. Therefore | |
226 | * the caller should notice the change and there is no race condition. | |
227 | */ | |
228 | qemu_mutex_lock(&timer_list->active_timers_lock); | |
229 | if (!timer_list->active_timers) { | |
230 | qemu_mutex_unlock(&timer_list->active_timers_lock); | |
231 | return -1; | |
232 | } | |
233 | expire_time = timer_list->active_timers->expire_time; | |
234 | qemu_mutex_unlock(&timer_list->active_timers_lock); | |
235 | ||
236 | delta = expire_time - qemu_clock_get_ns(timer_list->clock->type); | |
02a03a9f AB |
237 | |
238 | if (delta <= 0) { | |
239 | return 0; | |
240 | } | |
241 | ||
242 | return delta; | |
243 | } | |
244 | ||
ac70aafc AB |
245 | /* Calculate the soonest deadline across all timerlists attached |
246 | * to the clock. This is used for the icount timeout so we | |
247 | * ignore whether or not the clock should be used in deadline | |
248 | * calculations. | |
249 | */ | |
dcb15780 | 250 | int64_t qemu_clock_deadline_ns_all(QEMUClockType type, int attr_mask) |
ac70aafc AB |
251 | { |
252 | int64_t deadline = -1; | |
dcb15780 PD |
253 | int64_t delta; |
254 | int64_t expire_time; | |
255 | QEMUTimer *ts; | |
ac70aafc | 256 | QEMUTimerList *timer_list; |
40daca54 | 257 | QEMUClock *clock = qemu_clock_ptr(type); |
dcb15780 PD |
258 | |
259 | if (!clock->enabled) { | |
260 | return -1; | |
261 | } | |
262 | ||
ac70aafc | 263 | QLIST_FOREACH(timer_list, &clock->timerlists, list) { |
dcb15780 PD |
264 | qemu_mutex_lock(&timer_list->active_timers_lock); |
265 | ts = timer_list->active_timers; | |
266 | /* Skip all external timers */ | |
267 | while (ts && (ts->attributes & ~attr_mask)) { | |
268 | ts = ts->next; | |
269 | } | |
270 | if (!ts) { | |
271 | qemu_mutex_unlock(&timer_list->active_timers_lock); | |
272 | continue; | |
273 | } | |
274 | expire_time = ts->expire_time; | |
275 | qemu_mutex_unlock(&timer_list->active_timers_lock); | |
276 | ||
277 | delta = expire_time - qemu_clock_get_ns(type); | |
278 | if (delta <= 0) { | |
279 | delta = 0; | |
280 | } | |
281 | deadline = qemu_soonest_timeout(deadline, delta); | |
ac70aafc AB |
282 | } |
283 | return deadline; | |
284 | } | |
285 | ||
40daca54 | 286 | QEMUClockType timerlist_get_clock(QEMUTimerList *timer_list) |
ff83c66e | 287 | { |
40daca54 | 288 | return timer_list->clock->type; |
ff83c66e AB |
289 | } |
290 | ||
40daca54 | 291 | QEMUTimerList *qemu_clock_get_main_loop_timerlist(QEMUClockType type) |
ff83c66e | 292 | { |
7bf8fbde | 293 | return main_loop_tlg.tl[type]; |
ff83c66e AB |
294 | } |
295 | ||
d5541d86 AB |
296 | void timerlist_notify(QEMUTimerList *timer_list) |
297 | { | |
298 | if (timer_list->notify_cb) { | |
3f53bc61 | 299 | timer_list->notify_cb(timer_list->notify_opaque, timer_list->clock->type); |
d5541d86 AB |
300 | } else { |
301 | qemu_notify_event(); | |
302 | } | |
303 | } | |
304 | ||
02a03a9f AB |
305 | /* Transition function to convert a nanosecond timeout to ms |
306 | * This is used where a system does not support ppoll | |
307 | */ | |
308 | int qemu_timeout_ns_to_ms(int64_t ns) | |
309 | { | |
310 | int64_t ms; | |
311 | if (ns < 0) { | |
312 | return -1; | |
313 | } | |
314 | ||
315 | if (!ns) { | |
316 | return 0; | |
317 | } | |
318 | ||
319 | /* Always round up, because it's better to wait too long than to wait too | |
320 | * little and effectively busy-wait | |
321 | */ | |
5029b969 | 322 | ms = DIV_ROUND_UP(ns, SCALE_MS); |
02a03a9f AB |
323 | |
324 | /* To avoid overflow problems, limit this to 2^31, i.e. approx 25 days */ | |
325 | if (ms > (int64_t) INT32_MAX) { | |
326 | ms = INT32_MAX; | |
327 | } | |
328 | ||
329 | return (int) ms; | |
330 | } | |
331 | ||
332 | ||
4e0c6529 AB |
333 | /* qemu implementation of g_poll which uses a nanosecond timeout but is |
334 | * otherwise identical to g_poll | |
335 | */ | |
336 | int qemu_poll_ns(GPollFD *fds, guint nfds, int64_t timeout) | |
337 | { | |
338 | #ifdef CONFIG_PPOLL | |
339 | if (timeout < 0) { | |
340 | return ppoll((struct pollfd *)fds, nfds, NULL, NULL); | |
341 | } else { | |
342 | struct timespec ts; | |
490309fc PM |
343 | int64_t tvsec = timeout / 1000000000LL; |
344 | /* Avoid possibly overflowing and specifying a negative number of | |
345 | * seconds, which would turn a very long timeout into a busy-wait. | |
346 | */ | |
347 | if (tvsec > (int64_t)INT32_MAX) { | |
348 | tvsec = INT32_MAX; | |
349 | } | |
350 | ts.tv_sec = tvsec; | |
4e0c6529 AB |
351 | ts.tv_nsec = timeout % 1000000000LL; |
352 | return ppoll((struct pollfd *)fds, nfds, &ts, NULL); | |
353 | } | |
354 | #else | |
355 | return g_poll(fds, nfds, qemu_timeout_ns_to_ms(timeout)); | |
356 | #endif | |
357 | } | |
358 | ||
359 | ||
89a603a0 AP |
360 | void timer_init_full(QEMUTimer *ts, |
361 | QEMUTimerListGroup *timer_list_group, QEMUClockType type, | |
362 | int scale, int attributes, | |
363 | QEMUTimerCB *cb, void *opaque) | |
db1a4972 | 364 | { |
89a603a0 AP |
365 | if (!timer_list_group) { |
366 | timer_list_group = &main_loop_tlg; | |
367 | } | |
368 | ts->timer_list = timer_list_group->tl[type]; | |
db1a4972 PB |
369 | ts->cb = cb; |
370 | ts->opaque = opaque; | |
4a998740 | 371 | ts->scale = scale; |
89a603a0 | 372 | ts->attributes = attributes; |
3db1ee7c | 373 | ts->expire_time = -1; |
ff83c66e AB |
374 | } |
375 | ||
cd1bd53a PB |
376 | void timer_deinit(QEMUTimer *ts) |
377 | { | |
378 | assert(ts->expire_time == -1); | |
379 | ts->timer_list = NULL; | |
380 | } | |
381 | ||
978f2205 | 382 | static void timer_del_locked(QEMUTimerList *timer_list, QEMUTimer *ts) |
db1a4972 PB |
383 | { |
384 | QEMUTimer **pt, *t; | |
385 | ||
3db1ee7c | 386 | ts->expire_time = -1; |
978f2205 | 387 | pt = &timer_list->active_timers; |
db1a4972 PB |
388 | for(;;) { |
389 | t = *pt; | |
390 | if (!t) | |
391 | break; | |
392 | if (t == ts) { | |
8caa05d8 | 393 | atomic_set(pt, t->next); |
db1a4972 PB |
394 | break; |
395 | } | |
396 | pt = &t->next; | |
397 | } | |
398 | } | |
399 | ||
0f809e5f PB |
400 | static bool timer_mod_ns_locked(QEMUTimerList *timer_list, |
401 | QEMUTimer *ts, int64_t expire_time) | |
402 | { | |
403 | QEMUTimer **pt, *t; | |
404 | ||
405 | /* add the timer in the sorted list */ | |
406 | pt = &timer_list->active_timers; | |
407 | for (;;) { | |
408 | t = *pt; | |
409 | if (!timer_expired_ns(t, expire_time)) { | |
410 | break; | |
411 | } | |
412 | pt = &t->next; | |
413 | } | |
414 | ts->expire_time = MAX(expire_time, 0); | |
415 | ts->next = *pt; | |
8caa05d8 | 416 | atomic_set(pt, ts); |
0f809e5f PB |
417 | |
418 | return pt == &timer_list->active_timers; | |
419 | } | |
420 | ||
421 | static void timerlist_rearm(QEMUTimerList *timer_list) | |
422 | { | |
423 | /* Interrupt execution to force deadline recalculation. */ | |
e76d1798 PD |
424 | if (timer_list->clock->type == QEMU_CLOCK_VIRTUAL) { |
425 | qemu_start_warp_timer(); | |
426 | } | |
0f809e5f PB |
427 | timerlist_notify(timer_list); |
428 | } | |
429 | ||
978f2205 SH |
430 | /* stop a timer, but do not dealloc it */ |
431 | void timer_del(QEMUTimer *ts) | |
432 | { | |
433 | QEMUTimerList *timer_list = ts->timer_list; | |
434 | ||
cd1bd53a PB |
435 | if (timer_list) { |
436 | qemu_mutex_lock(&timer_list->active_timers_lock); | |
437 | timer_del_locked(timer_list, ts); | |
438 | qemu_mutex_unlock(&timer_list->active_timers_lock); | |
439 | } | |
978f2205 SH |
440 | } |
441 | ||
db1a4972 PB |
442 | /* modify the current timer so that it will be fired when current_time |
443 | >= expire_time. The corresponding callback will be called. */ | |
40daca54 | 444 | void timer_mod_ns(QEMUTimer *ts, int64_t expire_time) |
db1a4972 | 445 | { |
978f2205 | 446 | QEMUTimerList *timer_list = ts->timer_list; |
0f809e5f | 447 | bool rearm; |
db1a4972 | 448 | |
978f2205 SH |
449 | qemu_mutex_lock(&timer_list->active_timers_lock); |
450 | timer_del_locked(timer_list, ts); | |
0f809e5f | 451 | rearm = timer_mod_ns_locked(timer_list, ts, expire_time); |
978f2205 | 452 | qemu_mutex_unlock(&timer_list->active_timers_lock); |
db1a4972 | 453 | |
0f809e5f PB |
454 | if (rearm) { |
455 | timerlist_rearm(timer_list); | |
db1a4972 PB |
456 | } |
457 | } | |
458 | ||
add40e97 PB |
459 | /* modify the current timer so that it will be fired when current_time |
460 | >= expire_time or the current deadline, whichever comes earlier. | |
461 | The corresponding callback will be called. */ | |
462 | void timer_mod_anticipate_ns(QEMUTimer *ts, int64_t expire_time) | |
463 | { | |
464 | QEMUTimerList *timer_list = ts->timer_list; | |
465 | bool rearm; | |
466 | ||
467 | qemu_mutex_lock(&timer_list->active_timers_lock); | |
468 | if (ts->expire_time == -1 || ts->expire_time > expire_time) { | |
469 | if (ts->expire_time != -1) { | |
470 | timer_del_locked(timer_list, ts); | |
471 | } | |
472 | rearm = timer_mod_ns_locked(timer_list, ts, expire_time); | |
473 | } else { | |
474 | rearm = false; | |
475 | } | |
476 | qemu_mutex_unlock(&timer_list->active_timers_lock); | |
477 | ||
478 | if (rearm) { | |
479 | timerlist_rearm(timer_list); | |
480 | } | |
481 | } | |
482 | ||
40daca54 | 483 | void timer_mod(QEMUTimer *ts, int64_t expire_time) |
4a998740 | 484 | { |
40daca54 | 485 | timer_mod_ns(ts, expire_time * ts->scale); |
4a998740 PB |
486 | } |
487 | ||
add40e97 PB |
488 | void timer_mod_anticipate(QEMUTimer *ts, int64_t expire_time) |
489 | { | |
490 | timer_mod_anticipate_ns(ts, expire_time * ts->scale); | |
491 | } | |
492 | ||
e93379b0 | 493 | bool timer_pending(QEMUTimer *ts) |
db1a4972 | 494 | { |
3db1ee7c | 495 | return ts->expire_time >= 0; |
db1a4972 PB |
496 | } |
497 | ||
e93379b0 | 498 | bool timer_expired(QEMUTimer *timer_head, int64_t current_time) |
db1a4972 | 499 | { |
e93379b0 | 500 | return timer_expired_ns(timer_head, current_time * timer_head->scale); |
db1a4972 PB |
501 | } |
502 | ||
ff83c66e | 503 | bool timerlist_run_timers(QEMUTimerList *timer_list) |
db1a4972 | 504 | { |
144b97c2 | 505 | QEMUTimer *ts; |
db1a4972 | 506 | int64_t current_time; |
f9a976b7 | 507 | bool progress = false; |
978f2205 SH |
508 | QEMUTimerCB *cb; |
509 | void *opaque; | |
e81f8679 | 510 | bool need_replay_checkpoint = false; |
978f2205 | 511 | |
8caa05d8 PB |
512 | if (!atomic_read(&timer_list->active_timers)) { |
513 | return false; | |
514 | } | |
515 | ||
3c053411 | 516 | qemu_event_reset(&timer_list->timers_done_ev); |
8caa05d8 | 517 | if (!timer_list->clock->enabled) { |
3c053411 | 518 | goto out; |
ff83c66e | 519 | } |
db1a4972 | 520 | |
8bd7f71d PD |
521 | switch (timer_list->clock->type) { |
522 | case QEMU_CLOCK_REALTIME: | |
523 | break; | |
524 | default: | |
525 | case QEMU_CLOCK_VIRTUAL: | |
e81f8679 AP |
526 | if (replay_mode != REPLAY_MODE_NONE) { |
527 | /* Checkpoint for virtual clock is redundant in cases where | |
528 | * it's being triggered with only non-EXTERNAL timers, because | |
529 | * these timers don't change guest state directly. | |
530 | * Since it has conditional dependence on specific timers, it is | |
531 | * subject to race conditions and requires special handling. | |
532 | * See below. | |
533 | */ | |
534 | need_replay_checkpoint = true; | |
8bd7f71d PD |
535 | } |
536 | break; | |
537 | case QEMU_CLOCK_HOST: | |
538 | if (!replay_checkpoint(CHECKPOINT_CLOCK_HOST)) { | |
539 | goto out; | |
540 | } | |
541 | break; | |
542 | case QEMU_CLOCK_VIRTUAL_RT: | |
543 | if (!replay_checkpoint(CHECKPOINT_CLOCK_VIRTUAL_RT)) { | |
544 | goto out; | |
545 | } | |
546 | break; | |
547 | } | |
548 | ||
e81f8679 AP |
549 | /* |
550 | * Extract expired timers from active timers list and and process them. | |
551 | * | |
552 | * In rr mode we need "filtered" checkpointing for virtual clock. The | |
553 | * checkpoint must be recorded/replayed before processing any non-EXTERNAL timer, | |
554 | * and that must only be done once since the clock value stays the same. Because | |
555 | * non-EXTERNAL timers may appear in the timers list while it being processed, | |
556 | * the checkpoint can be issued at a time until no timers are left and we are | |
557 | * done". | |
558 | */ | |
40daca54 | 559 | current_time = qemu_clock_get_ns(timer_list->clock->type); |
e81f8679 AP |
560 | qemu_mutex_lock(&timer_list->active_timers_lock); |
561 | while ((ts = timer_list->active_timers)) { | |
e93379b0 | 562 | if (!timer_expired_ns(ts, current_time)) { |
e81f8679 AP |
563 | /* No expired timers left. The checkpoint can be skipped |
564 | * if no timers fired or they were all external. | |
565 | */ | |
db1a4972 | 566 | break; |
45c7b37f | 567 | } |
e81f8679 AP |
568 | if (need_replay_checkpoint |
569 | && !(ts->attributes & QEMU_TIMER_ATTR_EXTERNAL)) { | |
570 | /* once we got here, checkpoint clock only once */ | |
571 | need_replay_checkpoint = false; | |
572 | qemu_mutex_unlock(&timer_list->active_timers_lock); | |
573 | if (!replay_checkpoint(CHECKPOINT_CLOCK_VIRTUAL)) { | |
574 | goto out; | |
575 | } | |
576 | qemu_mutex_lock(&timer_list->active_timers_lock); | |
577 | /* The lock was released; start over again in case the list was | |
578 | * modified. | |
579 | */ | |
580 | continue; | |
581 | } | |
978f2205 | 582 | |
db1a4972 | 583 | /* remove timer from the list before calling the callback */ |
ff83c66e | 584 | timer_list->active_timers = ts->next; |
db1a4972 | 585 | ts->next = NULL; |
3db1ee7c | 586 | ts->expire_time = -1; |
978f2205 SH |
587 | cb = ts->cb; |
588 | opaque = ts->opaque; | |
db1a4972 PB |
589 | |
590 | /* run the callback (the timer list can be modified) */ | |
e81f8679 | 591 | qemu_mutex_unlock(&timer_list->active_timers_lock); |
978f2205 | 592 | cb(opaque); |
e81f8679 AP |
593 | qemu_mutex_lock(&timer_list->active_timers_lock); |
594 | ||
f9a976b7 | 595 | progress = true; |
db1a4972 | 596 | } |
e81f8679 | 597 | qemu_mutex_unlock(&timer_list->active_timers_lock); |
3c053411 LPF |
598 | |
599 | out: | |
600 | qemu_event_set(&timer_list->timers_done_ev); | |
f9a976b7 | 601 | return progress; |
db1a4972 PB |
602 | } |
603 | ||
40daca54 AB |
604 | bool qemu_clock_run_timers(QEMUClockType type) |
605 | { | |
7bf8fbde | 606 | return timerlist_run_timers(main_loop_tlg.tl[type]); |
40daca54 AB |
607 | } |
608 | ||
d5541d86 AB |
609 | void timerlistgroup_init(QEMUTimerListGroup *tlg, |
610 | QEMUTimerListNotifyCB *cb, void *opaque) | |
754d6a54 AB |
611 | { |
612 | QEMUClockType type; | |
613 | for (type = 0; type < QEMU_CLOCK_MAX; type++) { | |
d5541d86 | 614 | tlg->tl[type] = timerlist_new(type, cb, opaque); |
754d6a54 AB |
615 | } |
616 | } | |
617 | ||
618 | void timerlistgroup_deinit(QEMUTimerListGroup *tlg) | |
619 | { | |
620 | QEMUClockType type; | |
621 | for (type = 0; type < QEMU_CLOCK_MAX; type++) { | |
622 | timerlist_free(tlg->tl[type]); | |
623 | } | |
624 | } | |
625 | ||
626 | bool timerlistgroup_run_timers(QEMUTimerListGroup *tlg) | |
627 | { | |
628 | QEMUClockType type; | |
629 | bool progress = false; | |
630 | for (type = 0; type < QEMU_CLOCK_MAX; type++) { | |
631 | progress |= timerlist_run_timers(tlg->tl[type]); | |
632 | } | |
633 | return progress; | |
634 | } | |
635 | ||
636 | int64_t timerlistgroup_deadline_ns(QEMUTimerListGroup *tlg) | |
637 | { | |
638 | int64_t deadline = -1; | |
639 | QEMUClockType type; | |
640 | for (type = 0; type < QEMU_CLOCK_MAX; type++) { | |
8bd7f71d | 641 | if (qemu_clock_use_for_deadline(type)) { |
e4dab944 PD |
642 | deadline = qemu_soonest_timeout(deadline, |
643 | timerlist_deadline_ns(tlg->tl[type])); | |
754d6a54 AB |
644 | } |
645 | } | |
646 | return deadline; | |
647 | } | |
648 | ||
40daca54 | 649 | int64_t qemu_clock_get_ns(QEMUClockType type) |
db1a4972 | 650 | { |
40daca54 | 651 | switch (type) { |
db1a4972 PB |
652 | case QEMU_CLOCK_REALTIME: |
653 | return get_clock(); | |
654 | default: | |
655 | case QEMU_CLOCK_VIRTUAL: | |
656 | if (use_icount) { | |
657 | return cpu_get_icount(); | |
658 | } else { | |
659 | return cpu_get_clock(); | |
660 | } | |
661 | case QEMU_CLOCK_HOST: | |
3c2d4c8a | 662 | return REPLAY_CLOCK(REPLAY_CLOCK_HOST, get_clock_realtime()); |
4e7fa73e | 663 | case QEMU_CLOCK_VIRTUAL_RT: |
8eda206e | 664 | return REPLAY_CLOCK(REPLAY_CLOCK_VIRTUAL_RT, cpu_get_clock()); |
db1a4972 PB |
665 | } |
666 | } | |
667 | ||
3f53bc61 | 668 | void init_clocks(QEMUTimerListNotifyCB *notify_cb) |
db1a4972 | 669 | { |
ff83c66e AB |
670 | QEMUClockType type; |
671 | for (type = 0; type < QEMU_CLOCK_MAX; type++) { | |
3f53bc61 | 672 | qemu_clock_init(type, notify_cb); |
744ca8e3 | 673 | } |
ff83c66e | 674 | |
cd758dd0 AB |
675 | #ifdef CONFIG_PRCTL_PR_SET_TIMERSLACK |
676 | prctl(PR_SET_TIMERSLACK, 1, 0, 0, 0); | |
677 | #endif | |
db1a4972 PB |
678 | } |
679 | ||
e93379b0 | 680 | uint64_t timer_expire_time_ns(QEMUTimer *ts) |
db1a4972 | 681 | { |
e93379b0 | 682 | return timer_pending(ts) ? ts->expire_time : -1; |
db1a4972 PB |
683 | } |
684 | ||
40daca54 | 685 | bool qemu_clock_run_all_timers(void) |
db1a4972 | 686 | { |
f9a976b7 | 687 | bool progress = false; |
ff83c66e | 688 | QEMUClockType type; |
6d327171 | 689 | |
ff83c66e | 690 | for (type = 0; type < QEMU_CLOCK_MAX; type++) { |
6b8f0187 PB |
691 | if (qemu_clock_use_for_deadline(type)) { |
692 | progress |= qemu_clock_run_timers(type); | |
693 | } | |
ff83c66e | 694 | } |
158fd3ce | 695 | |
f9a976b7 | 696 | return progress; |
db1a4972 | 697 | } |