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Comparing libev/ev.c (file contents):
Revision 1.8 by root, Wed Oct 31 00:32:33 2007 UTC vs.
Revision 1.34 by root, Thu Nov 1 11:43:11 2007 UTC

1/*
2 * Copyright (c) 2007 Marc Alexander Lehmann <libev@schmorp.de>
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 are
7 * met:
8 *
9 * * Redistributions of source code must retain the above copyright
10 * notice, this list of conditions and the following disclaimer.
11 *
12 * * Redistributions in binary form must reproduce the above
13 * copyright notice, this list of conditions and the following
14 * disclaimer in the documentation and/or other materials provided
15 * with the distribution.
16 *
17 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
18 * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
19 * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
20 * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
21 * OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
22 * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
23 * 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
27 * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
28 */
29#if EV_USE_CONFIG_H
30# include "config.h"
31#endif
32
1#include <math.h> 33#include <math.h>
2#include <stdlib.h> 34#include <stdlib.h>
3#include <unistd.h> 35#include <unistd.h>
4#include <fcntl.h> 36#include <fcntl.h>
5#include <signal.h> 37#include <signal.h>
38#include <stddef.h>
6 39
7#include <stdio.h> 40#include <stdio.h>
8 41
9#include <assert.h> 42#include <assert.h>
10#include <errno.h> 43#include <errno.h>
44#include <sys/types.h>
45#include <sys/wait.h>
11#include <sys/time.h> 46#include <sys/time.h>
12#include <time.h> 47#include <time.h>
13 48
49#ifndef EV_USE_MONOTONIC
14#ifdef CLOCK_MONOTONIC 50# ifdef CLOCK_MONOTONIC
15# define HAVE_MONOTONIC 1 51# define EV_USE_MONOTONIC 1
16#endif 52# endif
53#endif
17 54
18#define HAVE_REALTIME 1 55#ifndef EV_USE_SELECT
19#define HAVE_EPOLL 1
20#define HAVE_SELECT 1 56# define EV_USE_SELECT 1
57#endif
58
59#ifndef EV_USE_EPOLL
60# define EV_USE_EPOLL 0
61#endif
62
63#ifndef CLOCK_REALTIME
64# define EV_USE_REALTIME 0
65#endif
66#ifndef EV_USE_REALTIME
67# define EV_USE_REALTIME 1 /* posix requirement, but might be slower */
68#endif
21 69
22#define MIN_TIMEJUMP 1. /* minimum timejump that gets detected (if monotonic clock available) */ 70#define MIN_TIMEJUMP 1. /* minimum timejump that gets detected (if monotonic clock available) */
23#define MAX_BLOCKTIME 60. 71#define MAX_BLOCKTIME 59.731 /* never wait longer than this time (to detetc time jumps) */
72#define PID_HASHSIZE 16 /* size of pid hash table, must be power of two */
73#define CLEANUP_INTERVAL (MAX_BLOCKTIME * 5.) /* how often to try to free memory and re-check fds */
24 74
25#include "ev.h" 75#include "ev.h"
26 76
27struct ev_watcher { 77typedef struct ev_watcher *W;
28 EV_WATCHER (ev_watcher);
29};
30
31struct ev_watcher_list { 78typedef struct ev_watcher_list *WL;
32 EV_WATCHER_LIST (ev_watcher_list); 79typedef struct ev_watcher_time *WT;
33};
34 80
35static ev_tstamp now, diff; /* monotonic clock */ 81static ev_tstamp now, diff; /* monotonic clock */
36ev_tstamp ev_now; 82ev_tstamp ev_now;
37int ev_method; 83int ev_method;
38 84
45/*****************************************************************************/ 91/*****************************************************************************/
46 92
47ev_tstamp 93ev_tstamp
48ev_time (void) 94ev_time (void)
49{ 95{
50#if HAVE_REALTIME 96#if EV_USE_REALTIME
51 struct timespec ts; 97 struct timespec ts;
52 clock_gettime (CLOCK_REALTIME, &ts); 98 clock_gettime (CLOCK_REALTIME, &ts);
53 return ts.tv_sec + ts.tv_nsec * 1e-9; 99 return ts.tv_sec + ts.tv_nsec * 1e-9;
54#else 100#else
55 struct timeval tv; 101 struct timeval tv;
59} 105}
60 106
61static ev_tstamp 107static ev_tstamp
62get_clock (void) 108get_clock (void)
63{ 109{
64#if HAVE_MONOTONIC 110#if EV_USE_MONOTONIC
65 if (have_monotonic) 111 if (have_monotonic)
66 { 112 {
67 struct timespec ts; 113 struct timespec ts;
68 clock_gettime (CLOCK_MONOTONIC, &ts); 114 clock_gettime (CLOCK_MONOTONIC, &ts);
69 return ts.tv_sec + ts.tv_nsec * 1e-9; 115 return ts.tv_sec + ts.tv_nsec * 1e-9;
71#endif 117#endif
72 118
73 return ev_time (); 119 return ev_time ();
74} 120}
75 121
122#define array_roundsize(base,n) ((n) | 4 & ~3)
123
76#define array_needsize(base,cur,cnt,init) \ 124#define array_needsize(base,cur,cnt,init) \
77 if ((cnt) > cur) \ 125 if ((cnt) > cur) \
78 { \ 126 { \
79 int newcnt = cur ? cur << 1 : 16; \ 127 int newcnt = cur; \
80 fprintf (stderr, "resize(" # base ") from %d to %d\n", cur, newcnt);\ 128 do \
129 { \
130 newcnt = array_roundsize (base, newcnt << 1); \
131 } \
132 while ((cnt) > newcnt); \
133 \
81 base = realloc (base, sizeof (*base) * (newcnt)); \ 134 base = realloc (base, sizeof (*base) * (newcnt)); \
82 init (base + cur, newcnt - cur); \ 135 init (base + cur, newcnt - cur); \
83 cur = newcnt; \ 136 cur = newcnt; \
84 } 137 }
85 138
86/*****************************************************************************/ 139/*****************************************************************************/
87 140
88typedef struct 141typedef struct
89{ 142{
90 struct ev_io *head; 143 struct ev_io *head;
91 unsigned char wev, rev; /* want, received event set */ 144 unsigned char events;
145 unsigned char reify;
92} ANFD; 146} ANFD;
93 147
94static ANFD *anfds; 148static ANFD *anfds;
95static int anfdmax; 149static int anfdmax;
96 150
97static int *fdchanges;
98static int fdchangemax, fdchangecnt;
99
100static void 151static void
101anfds_init (ANFD *base, int count) 152anfds_init (ANFD *base, int count)
102{ 153{
103 while (count--) 154 while (count--)
104 { 155 {
105 base->head = 0; 156 base->head = 0;
106 base->wev = base->rev = EV_NONE; 157 base->events = EV_NONE;
158 base->reify = 0;
159
107 ++base; 160 ++base;
108 } 161 }
109} 162}
110 163
111typedef struct 164typedef struct
112{ 165{
113 struct ev_watcher *w; 166 W w;
114 int events; 167 int events;
115} ANPENDING; 168} ANPENDING;
116 169
117static ANPENDING *pendings; 170static ANPENDING *pendings;
118static int pendingmax, pendingcnt; 171static int pendingmax, pendingcnt;
119 172
120static void 173static void
121event (struct ev_watcher *w, int events) 174event (W w, int events)
122{ 175{
176 if (w->pending)
177 {
178 pendings [w->pending - 1].events |= events;
179 return;
180 }
181
123 w->pending = ++pendingcnt; 182 w->pending = ++pendingcnt;
124 array_needsize (pendings, pendingmax, pendingcnt, ); 183 array_needsize (pendings, pendingmax, pendingcnt, );
125 pendings [pendingcnt - 1].w = w; 184 pendings [pendingcnt - 1].w = w;
126 pendings [pendingcnt - 1].events = events; 185 pendings [pendingcnt - 1].events = events;
127} 186}
128 187
129static void 188static void
189queue_events (W *events, int eventcnt, int type)
190{
191 int i;
192
193 for (i = 0; i < eventcnt; ++i)
194 event (events [i], type);
195}
196
197static void
130fd_event (int fd, int events) 198fd_event (int fd, int events)
131{ 199{
132 ANFD *anfd = anfds + fd; 200 ANFD *anfd = anfds + fd;
133 struct ev_io *w; 201 struct ev_io *w;
134 202
135 for (w = anfd->head; w; w = w->next) 203 for (w = anfd->head; w; w = w->next)
136 { 204 {
137 int ev = w->events & events; 205 int ev = w->events & events;
138 206
139 if (ev) 207 if (ev)
140 event ((struct ev_watcher *)w, ev); 208 event ((W)w, ev);
209 }
210}
211
212/*****************************************************************************/
213
214static int *fdchanges;
215static int fdchangemax, fdchangecnt;
216
217static void
218fd_reify (void)
219{
220 int i;
221
222 for (i = 0; i < fdchangecnt; ++i)
141 } 223 {
142} 224 int fd = fdchanges [i];
225 ANFD *anfd = anfds + fd;
226 struct ev_io *w;
143 227
144/*****************************************************************************/ 228 int events = 0;
145 229
230 for (w = anfd->head; w; w = w->next)
231 events |= w->events;
232
233 anfd->reify = 0;
234
235 if (anfd->events != events)
236 {
237 method_modify (fd, anfd->events, events);
238 anfd->events = events;
239 }
240 }
241
242 fdchangecnt = 0;
243}
244
245static void
246fd_change (int fd)
247{
248 if (anfds [fd].reify || fdchangecnt < 0)
249 return;
250
251 anfds [fd].reify = 1;
252
253 ++fdchangecnt;
254 array_needsize (fdchanges, fdchangemax, fdchangecnt, );
255 fdchanges [fdchangecnt - 1] = fd;
256}
257
258/* called on EBADF to verify fds */
259static void
260fd_recheck (void)
261{
262 int fd;
263
264 for (fd = 0; fd < anfdmax; ++fd)
265 if (anfds [fd].events)
266 if (fcntl (fd, F_GETFD) == -1 && errno == EBADF)
267 while (anfds [fd].head)
268 {
269 ev_io_stop (anfds [fd].head);
270 event ((W)anfds [fd].head, EV_ERROR | EV_READ | EV_WRITE);
271 }
272}
273
274/*****************************************************************************/
275
146static struct ev_timer **atimers; 276static struct ev_timer **timers;
147static int atimermax, atimercnt; 277static int timermax, timercnt;
148 278
149static struct ev_timer **rtimers; 279static struct ev_periodic **periodics;
150static int rtimermax, rtimercnt; 280static int periodicmax, periodiccnt;
151 281
152static void 282static void
153upheap (struct ev_timer **timers, int k) 283upheap (WT *timers, int k)
154{ 284{
155 struct ev_timer *w = timers [k]; 285 WT w = timers [k];
156 286
157 while (k && timers [k >> 1]->at > w->at) 287 while (k && timers [k >> 1]->at > w->at)
158 { 288 {
159 timers [k] = timers [k >> 1]; 289 timers [k] = timers [k >> 1];
160 timers [k]->active = k + 1; 290 timers [k]->active = k + 1;
165 timers [k]->active = k + 1; 295 timers [k]->active = k + 1;
166 296
167} 297}
168 298
169static void 299static void
170downheap (struct ev_timer **timers, int N, int k) 300downheap (WT *timers, int N, int k)
171{ 301{
172 struct ev_timer *w = timers [k]; 302 WT w = timers [k];
173 303
174 while (k < (N >> 1)) 304 while (k < (N >> 1))
175 { 305 {
176 int j = k << 1; 306 int j = k << 1;
177 307
193/*****************************************************************************/ 323/*****************************************************************************/
194 324
195typedef struct 325typedef struct
196{ 326{
197 struct ev_signal *head; 327 struct ev_signal *head;
198 sig_atomic_t gotsig; 328 sig_atomic_t volatile gotsig;
199} ANSIG; 329} ANSIG;
200 330
201static ANSIG *signals; 331static ANSIG *signals;
202static int signalmax; 332static int signalmax;
203 333
204static int sigpipe [2]; 334static int sigpipe [2];
205static sig_atomic_t gotsig; 335static sig_atomic_t volatile gotsig;
206static struct ev_io sigev; 336static struct ev_io sigev;
207 337
208static void 338static void
209signals_init (ANSIG *base, int count) 339signals_init (ANSIG *base, int count)
210{ 340{
211 while (count--) 341 while (count--)
212 { 342 {
213 base->head = 0; 343 base->head = 0;
214 base->gotsig = 0; 344 base->gotsig = 0;
345
215 ++base; 346 ++base;
216 } 347 }
217} 348}
218 349
219static void 350static void
222 signals [signum - 1].gotsig = 1; 353 signals [signum - 1].gotsig = 1;
223 354
224 if (!gotsig) 355 if (!gotsig)
225 { 356 {
226 gotsig = 1; 357 gotsig = 1;
227 write (sigpipe [1], &gotsig, 1); 358 write (sigpipe [1], &signum, 1);
228 } 359 }
229} 360}
230 361
231static void 362static void
232sigcb (struct ev_io *iow, int revents) 363sigcb (struct ev_io *iow, int revents)
233{ 364{
234 struct ev_signal *w; 365 struct ev_signal *w;
235 int sig; 366 int sig;
236 367
368 read (sigpipe [0], &revents, 1);
237 gotsig = 0; 369 gotsig = 0;
238 read (sigpipe [0], &revents, 1);
239 370
240 for (sig = signalmax; sig--; ) 371 for (sig = signalmax; sig--; )
241 if (signals [sig].gotsig) 372 if (signals [sig].gotsig)
242 { 373 {
243 signals [sig].gotsig = 0; 374 signals [sig].gotsig = 0;
244 375
245 for (w = signals [sig].head; w; w = w->next) 376 for (w = signals [sig].head; w; w = w->next)
246 event ((struct ev_watcher *)w, EV_SIGNAL); 377 event ((W)w, EV_SIGNAL);
247 } 378 }
248} 379}
249 380
250static void 381static void
251siginit (void) 382siginit (void)
255 386
256 /* rather than sort out wether we really need nb, set it */ 387 /* rather than sort out wether we really need nb, set it */
257 fcntl (sigpipe [0], F_SETFL, O_NONBLOCK); 388 fcntl (sigpipe [0], F_SETFL, O_NONBLOCK);
258 fcntl (sigpipe [1], F_SETFL, O_NONBLOCK); 389 fcntl (sigpipe [1], F_SETFL, O_NONBLOCK);
259 390
260 evio_set (&sigev, sigpipe [0], EV_READ); 391 ev_io_set (&sigev, sigpipe [0], EV_READ);
261 evio_start (&sigev); 392 ev_io_start (&sigev);
262} 393}
263 394
264/*****************************************************************************/ 395/*****************************************************************************/
265 396
397static struct ev_idle **idles;
398static int idlemax, idlecnt;
399
400static struct ev_prepare **prepares;
401static int preparemax, preparecnt;
402
403static struct ev_check **checks;
404static int checkmax, checkcnt;
405
406/*****************************************************************************/
407
408static struct ev_child *childs [PID_HASHSIZE];
409static struct ev_signal childev;
410
411#ifndef WCONTINUED
412# define WCONTINUED 0
413#endif
414
415static void
416childcb (struct ev_signal *sw, int revents)
417{
418 struct ev_child *w;
419 int pid, status;
420
421 while ((pid = waitpid (-1, &status, WNOHANG | WUNTRACED | WCONTINUED)) != -1)
422 for (w = childs [pid & (PID_HASHSIZE - 1)]; w; w = w->next)
423 if (w->pid == pid || w->pid == -1)
424 {
425 w->status = status;
426 event ((W)w, EV_CHILD);
427 }
428}
429
430/*****************************************************************************/
431
266#if HAVE_EPOLL 432#if EV_USE_EPOLL
267# include "ev_epoll.c" 433# include "ev_epoll.c"
268#endif 434#endif
269#if HAVE_SELECT 435#if EV_USE_SELECT
270# include "ev_select.c" 436# include "ev_select.c"
271#endif 437#endif
272 438
439int
440ev_version_major (void)
441{
442 return EV_VERSION_MAJOR;
443}
444
445int
446ev_version_minor (void)
447{
448 return EV_VERSION_MINOR;
449}
450
273int ev_init (int flags) 451int ev_init (int flags)
274{ 452{
275#if HAVE_MONOTONIC
276 {
277 struct timespec ts;
278 if (!clock_gettime (CLOCK_MONOTONIC, &ts))
279 have_monotonic = 1;
280 }
281#endif
282
283 ev_now = ev_time ();
284 now = get_clock ();
285 diff = ev_now - now;
286
287 if (pipe (sigpipe))
288 return 0;
289
290 ev_method = EVMETHOD_NONE;
291#if HAVE_EPOLL
292 if (ev_method == EVMETHOD_NONE) epoll_init (flags);
293#endif
294#if HAVE_SELECT
295 if (ev_method == EVMETHOD_NONE) select_init (flags);
296#endif
297
298 if (ev_method) 453 if (!ev_method)
454 {
455#if EV_USE_MONOTONIC
299 { 456 {
457 struct timespec ts;
458 if (!clock_gettime (CLOCK_MONOTONIC, &ts))
459 have_monotonic = 1;
460 }
461#endif
462
463 ev_now = ev_time ();
464 now = get_clock ();
465 diff = ev_now - now;
466
467 if (pipe (sigpipe))
468 return 0;
469
470 ev_method = EVMETHOD_NONE;
471#if EV_USE_EPOLL
472 if (ev_method == EVMETHOD_NONE) epoll_init (flags);
473#endif
474#if EV_USE_SELECT
475 if (ev_method == EVMETHOD_NONE) select_init (flags);
476#endif
477
478 if (ev_method)
479 {
300 evw_init (&sigev, sigcb, 0); 480 ev_watcher_init (&sigev, sigcb);
301 siginit (); 481 siginit ();
482
483 ev_signal_init (&childev, childcb, SIGCHLD);
484 ev_signal_start (&childev);
485 }
302 } 486 }
303 487
304 return ev_method; 488 return ev_method;
305} 489}
306 490
307/*****************************************************************************/ 491/*****************************************************************************/
308 492
493void
309void ev_prefork (void) 494ev_prefork (void)
310{ 495{
496 /* nop */
311} 497}
312 498
499void
313void ev_postfork_parent (void) 500ev_postfork_parent (void)
314{ 501{
502 /* nop */
315} 503}
316 504
505void
317void ev_postfork_child (void) 506ev_postfork_child (void)
318{ 507{
319#if HAVE_EPOLL 508#if EV_USE_EPOLL
320 if (ev_method == EVMETHOD_EPOLL) 509 if (ev_method == EVMETHOD_EPOLL)
321 epoll_postfork_child (); 510 epoll_postfork_child ();
322#endif 511#endif
323 512
324 evio_stop (&sigev); 513 ev_io_stop (&sigev);
325 close (sigpipe [0]); 514 close (sigpipe [0]);
326 close (sigpipe [1]); 515 close (sigpipe [1]);
327 pipe (sigpipe); 516 pipe (sigpipe);
328 siginit (); 517 siginit ();
329} 518}
330 519
331/*****************************************************************************/ 520/*****************************************************************************/
332 521
333static ev_hook hooks [EVHOOK_NUM];
334
335void
336ev_hook_register (int type, ev_hook hook)
337{
338 hooks [type] = hook;
339}
340
341void
342ev_hook_unregister (int type, ev_hook hook)
343{
344 hooks [type] = 0;
345}
346
347static void 522static void
348hook_call (int type)
349{
350 if (hooks [type])
351 hooks [type] ();
352}
353
354static void
355fd_reify (void)
356{
357 int i;
358
359 for (i = 0; i < fdchangecnt; ++i)
360 {
361 int fd = fdchanges [i];
362 ANFD *anfd = anfds + fd;
363 struct ev_io *w;
364
365 int wev = 0;
366
367 for (w = anfd->head; w; w = w->next)
368 wev |= w->events;
369
370 if (anfd->wev != wev)
371 {
372 method_modify (fd, anfd->wev, wev);
373 anfd->wev = wev;
374 }
375 }
376
377 fdchangecnt = 0;
378}
379
380static void
381call_pending () 523call_pending (void)
382{ 524{
383 int i; 525 while (pendingcnt)
384
385 for (i = 0; i < pendingcnt; ++i)
386 { 526 {
387 ANPENDING *p = pendings + i; 527 ANPENDING *p = pendings + --pendingcnt;
388 528
389 if (p->w) 529 if (p->w)
390 { 530 {
391 p->w->pending = 0; 531 p->w->pending = 0;
392 p->w->cb (p->w, p->events); 532 p->w->cb (p->w, p->events);
393 } 533 }
394 } 534 }
395
396 pendingcnt = 0;
397} 535}
398 536
399static void 537static void
400timers_reify (struct ev_timer **timers, int timercnt, ev_tstamp now) 538timers_reify (void)
401{ 539{
402 while (timercnt && timers [0]->at <= now) 540 while (timercnt && timers [0]->at <= now)
403 { 541 {
404 struct ev_timer *w = timers [0]; 542 struct ev_timer *w = timers [0];
405 543
406 /* first reschedule or stop timer */ 544 /* first reschedule or stop timer */
407 if (w->repeat) 545 if (w->repeat)
408 { 546 {
409 if (w->is_abs) 547 assert (("negative ev_timer repeat value found while processing timers", w->repeat > 0.));
410 w->at += floor ((now - w->at) / w->repeat + 1.) * w->repeat;
411 else
412 w->at = now + w->repeat; 548 w->at = now + w->repeat;
413
414 assert (w->at > now);
415
416 downheap (timers, timercnt, 0); 549 downheap ((WT *)timers, timercnt, 0);
417 } 550 }
418 else 551 else
419 {
420 evtimer_stop (w); /* nonrepeating: stop timer */ 552 ev_timer_stop (w); /* nonrepeating: stop timer */
421 --timercnt; /* maybe pass by reference instead? */ 553
554 event ((W)w, EV_TIMEOUT);
555 }
556}
557
558static void
559periodics_reify (void)
560{
561 while (periodiccnt && periodics [0]->at <= ev_now)
562 {
563 struct ev_periodic *w = periodics [0];
564
565 /* first reschedule or stop timer */
566 if (w->interval)
422 } 567 {
568 w->at += floor ((ev_now - w->at) / w->interval + 1.) * w->interval;
569 assert (("ev_periodic timeout in the past detected while processing timers, negative interval?", w->at > ev_now));
570 downheap ((WT *)periodics, periodiccnt, 0);
571 }
572 else
573 ev_periodic_stop (w); /* nonrepeating: stop timer */
423 574
424 event ((struct ev_watcher *)w, EV_TIMEOUT); 575 event ((W)w, EV_PERIODIC);
425 } 576 }
426} 577}
427 578
428static void 579static void
429time_update () 580periodics_reschedule (ev_tstamp diff)
430{ 581{
431 int i; 582 int i;
583
584 /* adjust periodics after time jump */
585 for (i = 0; i < periodiccnt; ++i)
586 {
587 struct ev_periodic *w = periodics [i];
588
589 if (w->interval)
590 {
591 ev_tstamp diff = ceil ((ev_now - w->at) / w->interval) * w->interval;
592
593 if (fabs (diff) >= 1e-4)
594 {
595 ev_periodic_stop (w);
596 ev_periodic_start (w);
597
598 i = 0; /* restart loop, inefficient, but time jumps should be rare */
599 }
600 }
601 }
602}
603
604static void
605time_update (void)
606{
607 int i;
608
432 ev_now = ev_time (); 609 ev_now = ev_time ();
433 610
434 if (have_monotonic) 611 if (have_monotonic)
435 { 612 {
436 ev_tstamp odiff = diff; 613 ev_tstamp odiff = diff;
437 614
438 /* detecting time jumps is much more difficult */
439 for (i = 2; --i; ) /* loop a few times, before making important decisions */ 615 for (i = 4; --i; ) /* loop a few times, before making important decisions */
440 { 616 {
441 now = get_clock (); 617 now = get_clock ();
442 diff = ev_now - now; 618 diff = ev_now - now;
443 619
444 if (fabs (odiff - diff) < MIN_TIMEJUMP) 620 if (fabs (odiff - diff) < MIN_TIMEJUMP)
445 return; /* all is well */ 621 return; /* all is well */
446 622
447 ev_now = ev_time (); 623 ev_now = ev_time ();
448 } 624 }
449 625
450 /* time jump detected, reschedule atimers */ 626 periodics_reschedule (diff - odiff);
451 for (i = 0; i < atimercnt; ++i) 627 /* no timer adjustment, as the monotonic clock doesn't jump */
452 {
453 struct ev_timer *w = atimers [i];
454 w->at += ceil ((ev_now - w->at) / w->repeat + 1.) * w->repeat;
455 }
456 } 628 }
457 else 629 else
458 { 630 {
459 if (now > ev_now || now < ev_now - MAX_BLOCKTIME - MIN_TIMEJUMP) 631 if (now > ev_now || now < ev_now - MAX_BLOCKTIME - MIN_TIMEJUMP)
460 /* time jump detected, adjust rtimers */ 632 {
633 periodics_reschedule (ev_now - now);
634
635 /* adjust timers. this is easy, as the offset is the same for all */
461 for (i = 0; i < rtimercnt; ++i) 636 for (i = 0; i < timercnt; ++i)
462 rtimers [i]->at += ev_now - now; 637 timers [i]->at += diff;
638 }
463 639
464 now = ev_now; 640 now = ev_now;
465 } 641 }
466} 642}
467 643
468int ev_loop_done; 644int ev_loop_done;
469 645
470void ev_loop (int flags) 646void ev_loop (int flags)
471{ 647{
472 double block; 648 double block;
473 ev_loop_done = flags & EVLOOP_ONESHOT; 649 ev_loop_done = flags & (EVLOOP_ONESHOT | EVLOOP_NONBLOCK) ? 1 : 0;
474 650
475 do 651 do
476 { 652 {
477 hook_call (EVHOOK_PREPOLL); 653 /* queue check watchers (and execute them) */
654 if (preparecnt)
655 {
656 queue_events ((W *)prepares, preparecnt, EV_PREPARE);
657 call_pending ();
658 }
478 659
479 /* update fd-related kernel structures */ 660 /* update fd-related kernel structures */
480 fd_reify (); 661 fd_reify ();
481 662
482 /* calculate blocking time */ 663 /* calculate blocking time */
664
665 /* we only need this for !monotonic clockor timers, but as we basically
666 always have timers, we just calculate it always */
667 ev_now = ev_time ();
668
483 if (flags & EVLOOP_NONBLOCK) 669 if (flags & EVLOOP_NONBLOCK || idlecnt)
484 block = 0.; 670 block = 0.;
485 else 671 else
486 { 672 {
487 block = MAX_BLOCKTIME; 673 block = MAX_BLOCKTIME;
488 674
489 if (rtimercnt) 675 if (timercnt)
490 { 676 {
491 ev_tstamp to = rtimers [0]->at - get_clock () + method_fudge; 677 ev_tstamp to = timers [0]->at - (have_monotonic ? get_clock () : ev_now) + method_fudge;
492 if (block > to) block = to; 678 if (block > to) block = to;
493 } 679 }
494 680
495 if (atimercnt) 681 if (periodiccnt)
496 { 682 {
497 ev_tstamp to = atimers [0]->at - ev_time () + method_fudge; 683 ev_tstamp to = periodics [0]->at - ev_now + method_fudge;
498 if (block > to) block = to; 684 if (block > to) block = to;
499 } 685 }
500 686
501 if (block < 0.) block = 0.; 687 if (block < 0.) block = 0.;
502 } 688 }
504 method_poll (block); 690 method_poll (block);
505 691
506 /* update ev_now, do magic */ 692 /* update ev_now, do magic */
507 time_update (); 693 time_update ();
508 694
509 hook_call (EVHOOK_POSTPOLL);
510
511 /* put pending timers into pendign queue and reschedule them */ 695 /* queue pending timers and reschedule them */
512 /* absolute timers first */ 696 timers_reify (); /* relative timers called last */
513 timers_reify (atimers, atimercnt, ev_now); 697 periodics_reify (); /* absolute timers called first */
514 /* relative timers second */ 698
515 timers_reify (rtimers, rtimercnt, now); 699 /* queue idle watchers unless io or timers are pending */
700 if (!pendingcnt)
701 queue_events ((W *)idles, idlecnt, EV_IDLE);
702
703 /* queue check watchers, to be executed first */
704 if (checkcnt)
705 queue_events ((W *)checks, checkcnt, EV_CHECK);
516 706
517 call_pending (); 707 call_pending ();
518 } 708 }
519 while (!ev_loop_done); 709 while (!ev_loop_done);
520}
521 710
522/*****************************************************************************/ 711 if (ev_loop_done != 2)
712 ev_loop_done = 0;
713}
523 714
715/*****************************************************************************/
716
524static void 717static void
525wlist_add (struct ev_watcher_list **head, struct ev_watcher_list *elem) 718wlist_add (WL *head, WL elem)
526{ 719{
527 elem->next = *head; 720 elem->next = *head;
528 *head = elem; 721 *head = elem;
529} 722}
530 723
531static void 724static void
532wlist_del (struct ev_watcher_list **head, struct ev_watcher_list *elem) 725wlist_del (WL *head, WL elem)
533{ 726{
534 while (*head) 727 while (*head)
535 { 728 {
536 if (*head == elem) 729 if (*head == elem)
537 { 730 {
542 head = &(*head)->next; 735 head = &(*head)->next;
543 } 736 }
544} 737}
545 738
546static void 739static void
547ev_start (struct ev_watcher *w, int active) 740ev_clear_pending (W w)
548{ 741{
742 if (w->pending)
743 {
744 pendings [w->pending - 1].w = 0;
549 w->pending = 0; 745 w->pending = 0;
746 }
747}
748
749static void
750ev_start (W w, int active)
751{
550 w->active = active; 752 w->active = active;
551} 753}
552 754
553static void 755static void
554ev_stop (struct ev_watcher *w) 756ev_stop (W w)
555{ 757{
556 if (w->pending)
557 pendings [w->pending - 1].w = 0;
558
559 w->active = 0; 758 w->active = 0;
560 /* nop */
561} 759}
562 760
563/*****************************************************************************/ 761/*****************************************************************************/
564 762
565void 763void
566evio_start (struct ev_io *w) 764ev_io_start (struct ev_io *w)
567{ 765{
568 if (ev_is_active (w)) 766 if (ev_is_active (w))
569 return; 767 return;
570 768
571 int fd = w->fd; 769 int fd = w->fd;
572 770
573 ev_start ((struct ev_watcher *)w, 1); 771 assert (("ev_io_start called with negative fd", fd >= 0));
772
773 ev_start ((W)w, 1);
574 array_needsize (anfds, anfdmax, fd + 1, anfds_init); 774 array_needsize (anfds, anfdmax, fd + 1, anfds_init);
575 wlist_add ((struct ev_watcher_list **)&anfds[fd].head, (struct ev_watcher_list *)w); 775 wlist_add ((WL *)&anfds[fd].head, (WL)w);
576 776
577 ++fdchangecnt; 777 fd_change (fd);
578 array_needsize (fdchanges, fdchangemax, fdchangecnt, );
579 fdchanges [fdchangecnt - 1] = fd;
580} 778}
581 779
582void 780void
583evio_stop (struct ev_io *w) 781ev_io_stop (struct ev_io *w)
584{ 782{
783 ev_clear_pending ((W)w);
585 if (!ev_is_active (w)) 784 if (!ev_is_active (w))
586 return; 785 return;
587 786
588 wlist_del ((struct ev_watcher_list **)&anfds[w->fd].head, (struct ev_watcher_list *)w); 787 wlist_del ((WL *)&anfds[w->fd].head, (WL)w);
589 ev_stop ((struct ev_watcher *)w); 788 ev_stop ((W)w);
590 789
591 ++fdchangecnt; 790 fd_change (w->fd);
592 array_needsize (fdchanges, fdchangemax, fdchangecnt, );
593 fdchanges [fdchangecnt - 1] = w->fd;
594} 791}
595 792
596void 793void
597evtimer_start (struct ev_timer *w) 794ev_timer_start (struct ev_timer *w)
598{ 795{
796 if (ev_is_active (w))
797 return;
798
799 w->at += now;
800
801 assert (("ev_timer_start called with negative timer repeat value", w->repeat >= 0.));
802
803 ev_start ((W)w, ++timercnt);
804 array_needsize (timers, timermax, timercnt, );
805 timers [timercnt - 1] = w;
806 upheap ((WT *)timers, timercnt - 1);
807}
808
809void
810ev_timer_stop (struct ev_timer *w)
811{
812 ev_clear_pending ((W)w);
599 if (ev_is_active (w)) 813 if (!ev_is_active (w))
600 return; 814 return;
601 815
602 if (w->is_abs) 816 if (w->active < timercnt--)
817 {
818 timers [w->active - 1] = timers [timercnt];
819 downheap ((WT *)timers, timercnt, w->active - 1);
603 { 820 }
604 /* this formula differs from the one in timer_reify becuse we do not round up */ 821
822 w->at = w->repeat;
823
824 ev_stop ((W)w);
825}
826
827void
828ev_timer_again (struct ev_timer *w)
829{
830 if (ev_is_active (w))
831 {
605 if (w->repeat) 832 if (w->repeat)
833 {
834 w->at = now + w->repeat;
835 downheap ((WT *)timers, timercnt, w->active - 1);
836 }
837 else
838 ev_timer_stop (w);
839 }
840 else if (w->repeat)
841 ev_timer_start (w);
842}
843
844void
845ev_periodic_start (struct ev_periodic *w)
846{
847 if (ev_is_active (w))
848 return;
849
850 assert (("ev_periodic_start called with negative interval value", w->interval >= 0.));
851
852 /* this formula differs from the one in periodic_reify because we do not always round up */
853 if (w->interval)
606 w->at += ceil ((ev_now - w->at) / w->repeat) * w->repeat; 854 w->at += ceil ((ev_now - w->at) / w->interval) * w->interval;
607 855
608 ev_start ((struct ev_watcher *)w, ++atimercnt); 856 ev_start ((W)w, ++periodiccnt);
609 array_needsize (atimers, atimermax, atimercnt, ); 857 array_needsize (periodics, periodicmax, periodiccnt, );
610 atimers [atimercnt - 1] = w; 858 periodics [periodiccnt - 1] = w;
611 upheap (atimers, atimercnt - 1); 859 upheap ((WT *)periodics, periodiccnt - 1);
612 }
613 else
614 {
615 w->at += now;
616
617 ev_start ((struct ev_watcher *)w, ++rtimercnt);
618 array_needsize (rtimers, rtimermax, rtimercnt, );
619 rtimers [rtimercnt - 1] = w;
620 upheap (rtimers, rtimercnt - 1);
621 }
622
623} 860}
624 861
625void 862void
626evtimer_stop (struct ev_timer *w) 863ev_periodic_stop (struct ev_periodic *w)
627{ 864{
865 ev_clear_pending ((W)w);
628 if (!ev_is_active (w)) 866 if (!ev_is_active (w))
629 return; 867 return;
630 868
631 if (w->is_abs)
632 {
633 if (w->active < atimercnt--) 869 if (w->active < periodiccnt--)
634 {
635 atimers [w->active - 1] = atimers [atimercnt];
636 downheap (atimers, atimercnt, w->active - 1);
637 }
638 } 870 {
639 else 871 periodics [w->active - 1] = periodics [periodiccnt];
872 downheap ((WT *)periodics, periodiccnt, w->active - 1);
640 { 873 }
641 if (w->active < rtimercnt--)
642 {
643 rtimers [w->active - 1] = rtimers [rtimercnt];
644 downheap (rtimers, rtimercnt, w->active - 1);
645 }
646 }
647 874
648 ev_stop ((struct ev_watcher *)w); 875 ev_stop ((W)w);
649} 876}
650 877
651void 878void
652evsignal_start (struct ev_signal *w) 879ev_signal_start (struct ev_signal *w)
653{ 880{
654 if (ev_is_active (w)) 881 if (ev_is_active (w))
655 return; 882 return;
656 883
657 ev_start ((struct ev_watcher *)w, 1); 884 assert (("ev_signal_start called with illegal signal number", w->signum > 0));
885
886 ev_start ((W)w, 1);
658 array_needsize (signals, signalmax, w->signum, signals_init); 887 array_needsize (signals, signalmax, w->signum, signals_init);
659 wlist_add ((struct ev_watcher_list **)&signals [w->signum - 1].head, (struct ev_watcher_list *)w); 888 wlist_add ((WL *)&signals [w->signum - 1].head, (WL)w);
660 889
661 if (!w->next) 890 if (!w->next)
662 { 891 {
663 struct sigaction sa; 892 struct sigaction sa;
664 sa.sa_handler = sighandler; 893 sa.sa_handler = sighandler;
667 sigaction (w->signum, &sa, 0); 896 sigaction (w->signum, &sa, 0);
668 } 897 }
669} 898}
670 899
671void 900void
672evsignal_stop (struct ev_signal *w) 901ev_signal_stop (struct ev_signal *w)
673{ 902{
903 ev_clear_pending ((W)w);
674 if (!ev_is_active (w)) 904 if (!ev_is_active (w))
675 return; 905 return;
676 906
677 wlist_del ((struct ev_watcher_list **)&signals [w->signum - 1].head, (struct ev_watcher_list *)w); 907 wlist_del ((WL *)&signals [w->signum - 1].head, (WL)w);
678 ev_stop ((struct ev_watcher *)w); 908 ev_stop ((W)w);
679 909
680 if (!signals [w->signum - 1].head) 910 if (!signals [w->signum - 1].head)
681 signal (w->signum, SIG_DFL); 911 signal (w->signum, SIG_DFL);
682} 912}
683 913
914void
915ev_idle_start (struct ev_idle *w)
916{
917 if (ev_is_active (w))
918 return;
919
920 ev_start ((W)w, ++idlecnt);
921 array_needsize (idles, idlemax, idlecnt, );
922 idles [idlecnt - 1] = w;
923}
924
925void
926ev_idle_stop (struct ev_idle *w)
927{
928 ev_clear_pending ((W)w);
929 if (ev_is_active (w))
930 return;
931
932 idles [w->active - 1] = idles [--idlecnt];
933 ev_stop ((W)w);
934}
935
936void
937ev_prepare_start (struct ev_prepare *w)
938{
939 if (ev_is_active (w))
940 return;
941
942 ev_start ((W)w, ++preparecnt);
943 array_needsize (prepares, preparemax, preparecnt, );
944 prepares [preparecnt - 1] = w;
945}
946
947void
948ev_prepare_stop (struct ev_prepare *w)
949{
950 ev_clear_pending ((W)w);
951 if (ev_is_active (w))
952 return;
953
954 prepares [w->active - 1] = prepares [--preparecnt];
955 ev_stop ((W)w);
956}
957
958void
959ev_check_start (struct ev_check *w)
960{
961 if (ev_is_active (w))
962 return;
963
964 ev_start ((W)w, ++checkcnt);
965 array_needsize (checks, checkmax, checkcnt, );
966 checks [checkcnt - 1] = w;
967}
968
969void
970ev_check_stop (struct ev_check *w)
971{
972 ev_clear_pending ((W)w);
973 if (ev_is_active (w))
974 return;
975
976 checks [w->active - 1] = checks [--checkcnt];
977 ev_stop ((W)w);
978}
979
980void
981ev_child_start (struct ev_child *w)
982{
983 if (ev_is_active (w))
984 return;
985
986 ev_start ((W)w, 1);
987 wlist_add ((WL *)&childs [w->pid & (PID_HASHSIZE - 1)], (WL)w);
988}
989
990void
991ev_child_stop (struct ev_child *w)
992{
993 ev_clear_pending ((W)w);
994 if (ev_is_active (w))
995 return;
996
997 wlist_del ((WL *)&childs [w->pid & (PID_HASHSIZE - 1)], (WL)w);
998 ev_stop ((W)w);
999}
1000
684/*****************************************************************************/ 1001/*****************************************************************************/
1002
1003struct ev_once
1004{
1005 struct ev_io io;
1006 struct ev_timer to;
1007 void (*cb)(int revents, void *arg);
1008 void *arg;
1009};
1010
1011static void
1012once_cb (struct ev_once *once, int revents)
1013{
1014 void (*cb)(int revents, void *arg) = once->cb;
1015 void *arg = once->arg;
1016
1017 ev_io_stop (&once->io);
1018 ev_timer_stop (&once->to);
1019 free (once);
1020
1021 cb (revents, arg);
1022}
1023
1024static void
1025once_cb_io (struct ev_io *w, int revents)
1026{
1027 once_cb ((struct ev_once *)(((char *)w) - offsetof (struct ev_once, io)), revents);
1028}
1029
1030static void
1031once_cb_to (struct ev_timer *w, int revents)
1032{
1033 once_cb ((struct ev_once *)(((char *)w) - offsetof (struct ev_once, to)), revents);
1034}
1035
1036void
1037ev_once (int fd, int events, ev_tstamp timeout, void (*cb)(int revents, void *arg), void *arg)
1038{
1039 struct ev_once *once = malloc (sizeof (struct ev_once));
1040
1041 if (!once)
1042 cb (EV_ERROR | EV_READ | EV_WRITE | EV_TIMEOUT, arg);
1043 else
1044 {
1045 once->cb = cb;
1046 once->arg = arg;
1047
1048 ev_watcher_init (&once->io, once_cb_io);
1049 if (fd >= 0)
1050 {
1051 ev_io_set (&once->io, fd, events);
1052 ev_io_start (&once->io);
1053 }
1054
1055 ev_watcher_init (&once->to, once_cb_to);
1056 if (timeout >= 0.)
1057 {
1058 ev_timer_set (&once->to, timeout, 0.);
1059 ev_timer_start (&once->to);
1060 }
1061 }
1062}
1063
1064/*****************************************************************************/
1065
685#if 1 1066#if 0
1067
1068struct ev_io wio;
686 1069
687static void 1070static void
688sin_cb (struct ev_io *w, int revents) 1071sin_cb (struct ev_io *w, int revents)
689{ 1072{
690 fprintf (stderr, "sin %d, revents %d\n", w->fd, revents); 1073 fprintf (stderr, "sin %d, revents %d\n", w->fd, revents);
692 1075
693static void 1076static void
694ocb (struct ev_timer *w, int revents) 1077ocb (struct ev_timer *w, int revents)
695{ 1078{
696 //fprintf (stderr, "timer %f,%f (%x) (%f) d%p\n", w->at, w->repeat, revents, w->at - ev_time (), w->data); 1079 //fprintf (stderr, "timer %f,%f (%x) (%f) d%p\n", w->at, w->repeat, revents, w->at - ev_time (), w->data);
697 evtimer_stop (w); 1080 ev_timer_stop (w);
698 evtimer_start (w); 1081 ev_timer_start (w);
699} 1082}
700 1083
701static void 1084static void
702scb (struct ev_signal *w, int revents) 1085scb (struct ev_signal *w, int revents)
703{ 1086{
704 fprintf (stderr, "signal %x,%d\n", revents, w->signum); 1087 fprintf (stderr, "signal %x,%d\n", revents, w->signum);
1088 ev_io_stop (&wio);
1089 ev_io_start (&wio);
1090}
1091
1092static void
1093gcb (struct ev_signal *w, int revents)
1094{
1095 fprintf (stderr, "generic %x\n", revents);
1096
705} 1097}
706 1098
707int main (void) 1099int main (void)
708{ 1100{
709 struct ev_io sin;
710
711 ev_init (0); 1101 ev_init (0);
712 1102
713 evw_init (&sin, sin_cb, 55);
714 evio_set (&sin, 0, EV_READ); 1103 ev_io_init (&wio, sin_cb, 0, EV_READ);
715 evio_start (&sin); 1104 ev_io_start (&wio);
716 1105
717 struct ev_timer t[10000]; 1106 struct ev_timer t[10000];
718 1107
719#if 1 1108#if 0
720 int i; 1109 int i;
721 for (i = 0; i < 10000; ++i) 1110 for (i = 0; i < 10000; ++i)
722 { 1111 {
723 struct ev_timer *w = t + i; 1112 struct ev_timer *w = t + i;
724 evw_init (w, ocb, i); 1113 ev_watcher_init (w, ocb, i);
725 evtimer_set_abs (w, drand48 (), 0.99775533); 1114 ev_timer_init_abs (w, ocb, drand48 (), 0.99775533);
726 evtimer_start (w); 1115 ev_timer_start (w);
727 if (drand48 () < 0.5) 1116 if (drand48 () < 0.5)
728 evtimer_stop (w); 1117 ev_timer_stop (w);
729 } 1118 }
730#endif 1119#endif
731 1120
732 struct ev_timer t1; 1121 struct ev_timer t1;
733 evw_init (&t1, ocb, 0); 1122 ev_timer_init (&t1, ocb, 5, 10);
734 evtimer_set_abs (&t1, 5, 10);
735 evtimer_start (&t1); 1123 ev_timer_start (&t1);
736 1124
737 struct ev_signal sig; 1125 struct ev_signal sig;
738 evw_init (&sig, scb, 65535);
739 evsignal_set (&sig, SIGQUIT); 1126 ev_signal_init (&sig, scb, SIGQUIT);
740 evsignal_start (&sig); 1127 ev_signal_start (&sig);
1128
1129 struct ev_check cw;
1130 ev_check_init (&cw, gcb);
1131 ev_check_start (&cw);
1132
1133 struct ev_idle iw;
1134 ev_idle_init (&iw, gcb);
1135 ev_idle_start (&iw);
741 1136
742 ev_loop (0); 1137 ev_loop (0);
743 1138
744 return 0; 1139 return 0;
745} 1140}

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