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Comparing libev/ev.h (file contents):
Revision 1.14 by root, Wed Oct 31 20:46:44 2007 UTC vs.
Revision 1.49 by root, Sat Nov 10 21:19:30 2007 UTC

25 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT 25 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
26 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE 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. 27 * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
28 */ 28 */
29 29
30#ifndef EV_H 30#ifndef EV_H__
31#define EV_H 31#define EV_H__
32
33#ifdef __cplusplus
34extern "C" {
35#endif
32 36
33typedef double ev_tstamp; 37typedef double ev_tstamp;
34 38
39/* these priorities are inclusive, higher priorities will be called earlier */
40#ifndef EV_MINPRI
41# define EV_MINPRI -2
42#endif
43#ifndef EV_MAXPRI
44# define EV_MAXPRI +2
45#endif
46
47#ifndef EV_MULTIPLICITY
48# define EV_MULTIPLICITY 1
49#endif
50
51/* support multiple event loops? */
52#if EV_MULTIPLICITY
53struct ev_loop;
54# define EV_P struct ev_loop *loop
55# define EV_P_ EV_P,
56# define EV_A loop
57# define EV_A_ EV_A,
58# define EV_DEFAULT_A ev_default_loop (0)
59# define EV_DEFAULT_A_ EV_DEFAULT_A,
60#else
61# define EV_P void
62# define EV_P_
63# define EV_A
64# define EV_A_
65# define EV_DEFAULT_A
66# define EV_DEFAULT_A_
67#endif
68
35/* eventmask, revents, events... */ 69/* eventmask, revents, events... */
36#define EV_UNDEF -1 /* guaranteed to be invalid */ 70#define EV_UNDEF -1 /* guaranteed to be invalid */
37#define EV_NONE 0x000000 71#define EV_NONE 0x00
38#define EV_READ 0x000001 72#define EV_READ 0x01
39#define EV_WRITE 0x000002 73#define EV_WRITE 0x02
40#define EV_TIMEOUT 0x000004 74#define EV_TIMEOUT 0x000100
75#define EV_PERIODIC 0x000200
41#define EV_SIGNAL 0x000008 76#define EV_SIGNAL 0x000400
42#define EV_IDLE 0x000010 77#define EV_IDLE 0x000800
43#define EV_CHECK 0x000020 78#define EV_CHECK 0x001000
44#define EV_PREPARE 0x000040 79#define EV_PREPARE 0x002000
45#define EV_CHILD 0x000080 80#define EV_CHILD 0x004000
46#define EV_ERROR 0x800000 81#define EV_ERROR 0x800000 /* sent when an error occurs */
47 82
48/* can be used to add custom fields to all watchers */ 83/* can be used to add custom fields to all watchers */
49#ifndef EV_COMMON 84#ifndef EV_COMMON
50# define EV_COMMON void *data 85# define EV_COMMON void *data
51#endif 86#endif
53# define EV_PROTOTYPES 1 88# define EV_PROTOTYPES 1
54#endif 89#endif
55 90
56#define EV_VERSION_MAJOR 1 91#define EV_VERSION_MAJOR 1
57#define EV_VERSION_MINOR 1 92#define EV_VERSION_MINOR 1
93
94#ifndef EV_CB_DECLARE
95# define EV_CB_DECLARE(type) void (*cb)(EV_P_ struct type *w, int revents);
96#endif
97#ifndef EV_CB_INVOKE
98# define EV_CB_INVOKE(watcher,revents) (watcher)->cb (EV_A_ (watcher), (revents))
99#endif
58 100
59/* 101/*
60 * struct member types: 102 * struct member types:
61 * private: you can look at them, but not change them, and they might not mean anything to you. 103 * private: you can look at them, but not change them, and they might not mean anything to you.
62 * ro: can be read anytime, but only changed when the watcher isn't active 104 * ro: can be read anytime, but only changed when the watcher isn't active
65 107
66/* shared by all watchers */ 108/* shared by all watchers */
67#define EV_WATCHER(type) \ 109#define EV_WATCHER(type) \
68 int active; /* private */ \ 110 int active; /* private */ \
69 int pending; /* private */ \ 111 int pending; /* private */ \
112 int priority; /* private */ \
70 EV_COMMON; /* rw */ \ 113 EV_COMMON; /* rw */ \
71 void (*cb)(struct type *, int revents); /* rw */ /* gets invoked with an eventmask */ 114 EV_CB_DECLARE (type) /* private */
72 115
73#define EV_WATCHER_LIST(type) \ 116#define EV_WATCHER_LIST(type) \
74 EV_WATCHER (type); \ 117 EV_WATCHER (type); \
75 struct type *next /* private */ 118 struct ev_watcher_list *next /* private */
76 119
77#define EV_WATCHER_TIME(type) \ 120#define EV_WATCHER_TIME(type) \
78 EV_WATCHER (type); \ 121 EV_WATCHER (type); \
79 ev_tstamp at /* private */ 122 ev_tstamp at /* private */
80 123
81/* base class, nothing to see here unless you subclass */ 124/* base class, nothing to see here unless you subclass */
82struct ev_watcher { 125struct ev_watcher
126{
83 EV_WATCHER (ev_watcher); 127 EV_WATCHER (ev_watcher);
84}; 128};
85 129
86/* base class, nothing to see here unless you subclass */ 130/* base class, nothing to see here unless you subclass */
87struct ev_watcher_list { 131struct ev_watcher_list
132{
88 EV_WATCHER_LIST (ev_watcher_list); 133 EV_WATCHER_LIST (ev_watcher_list);
89}; 134};
90 135
91/* base class, nothing to see here unless you subclass */ 136/* base class, nothing to see here unless you subclass */
92struct ev_watcher_time { 137struct ev_watcher_time
138{
93 EV_WATCHER_TIME (ev_watcher_time); 139 EV_WATCHER_TIME (ev_watcher_time);
94}; 140};
95 141
96/* invoked after a specific time, repeatable (based on monotonic clock) */ 142/* invoked after a specific time, repeatable (based on monotonic clock) */
143/* revent EV_TIMEOUT */
97struct ev_timer 144struct ev_timer
98{ 145{
99 EV_WATCHER_TIME (ev_timer); 146 EV_WATCHER_TIME (ev_timer);
100 147
101 ev_tstamp repeat; /* rw */ 148 ev_tstamp repeat; /* rw */
102}; 149};
103 150
104/* invoked at some specific time, possibly repeating at regular intervals (based on UTC) */ 151/* invoked at some specific time, possibly repeating at regular intervals (based on UTC) */
152/* revent EV_PERIODIC */
105struct ev_periodic 153struct ev_periodic
106{ 154{
107 EV_WATCHER_TIME (ev_periodic); 155 EV_WATCHER_TIME (ev_periodic);
108 156
109 ev_tstamp interval; /* rw */ 157 ev_tstamp interval; /* rw */
158 ev_tstamp (*reschedule_cb)(struct ev_periodic *w, ev_tstamp now); /* rw */
110}; 159};
111 160
112/* invoked when fd is either EV_READable or EV_WRITEable */ 161/* invoked when fd is either EV_READable or EV_WRITEable */
162/* revent EV_READ, EV_WRITE */
113struct ev_io 163struct ev_io
114{ 164{
115 EV_WATCHER_LIST (ev_io); 165 EV_WATCHER_LIST (ev_io);
116 166
117 int fd; /* ro */ 167 int fd; /* ro */
118 int events; /* ro */ 168 int events; /* ro */
119}; 169};
120 170
121/* invoked when the given signal has been received */ 171/* invoked when the given signal has been received */
172/* revent EV_SIGNAL */
122struct ev_signal 173struct ev_signal
123{ 174{
124 EV_WATCHER_LIST (ev_signal); 175 EV_WATCHER_LIST (ev_signal);
125 176
126 int signum; /* ro */ 177 int signum; /* ro */
127}; 178};
128 179
129/* invoked when the nothing else needs to be done, keeps the process from blocking */ 180/* invoked when the nothing else needs to be done, keeps the process from blocking */
181/* revent EV_IDLE */
130struct ev_idle 182struct ev_idle
131{ 183{
132 EV_WATCHER (ev_idle); 184 EV_WATCHER (ev_idle);
133}; 185};
134 186
135/* invoked for each run of the mainloop, just before the blocking call */ 187/* invoked for each run of the mainloop, just before the blocking call */
136/* you can still change events in any way you like */ 188/* you can still change events in any way you like */
189/* revent EV_PREPARE */
137struct ev_prepare 190struct ev_prepare
138{ 191{
139 EV_WATCHER (ev_prepare); 192 EV_WATCHER (ev_prepare);
140}; 193};
141 194
142/* invoked for each run of the mainloop, just after the blocking call */ 195/* invoked for each run of the mainloop, just after the blocking call */
196/* revent EV_CHECK */
143struct ev_check 197struct ev_check
144{ 198{
145 EV_WATCHER (ev_check); 199 EV_WATCHER (ev_check);
146}; 200};
147 201
148/* invoked when sigchld is received and waitpid indicates the givne pid */ 202/* invoked when sigchld is received and waitpid indicates the givne pid */
203/* revent EV_CHILD */
204/* does not support priorities */
149struct ev_child 205struct ev_child
150{ 206{
151 EV_WATCHER_LIST (ev_child); 207 EV_WATCHER_LIST (ev_child);
152 208
153 int pid; /* ro */ 209 int pid; /* ro */
210 int rpid; /* rw, holds the received pid */
154 int status; /* rw, holds the exit status, use the macros from sys/wait.h */ 211 int rstatus; /* rw, holds the exit status, use the macros from sys/wait.h */
155}; 212};
156 213
157#define EVMETHOD_NONE 0 214/* the presence of this union forces similar struct layout */
215union ev_any_watcher
216{
217 struct ev_watcher w;
218 struct ev_watcher_list wl;
219
220 struct ev_io io;
221 struct ev_timer timer;
222 struct ev_periodic periodic;
223 struct ev_idle idle;
224 struct ev_prepare prepare;
225 struct ev_check check;
226 struct ev_signal signal;
227 struct ev_child child;
228};
229
230#define EVMETHOD_AUTO 0 /* consults environment */
158#define EVMETHOD_SELECT 1 231#define EVMETHOD_SELECT 1
159#define EVMETHOD_EPOLL 2 232#define EVMETHOD_POLL 2
233#define EVMETHOD_EPOLL 4
234#define EVMETHOD_KQUEUE 8
235#define EVMETHOD_DEVPOLL 16 /* NYI */
236#define EVMETHOD_PORT 32 /* NYI */
237#define EVMETHOD_WIN32 64 /* NYI */
238#define EVMETHOD_ANY ~0 /* any method, do not consult env */
239
160#if EV_PROTOTYPES 240#if EV_PROTOTYPES
161extern int ev_method;
162int ev_init (int flags); /* returns ev_method */
163int ev_version_major (void); 241int ev_version_major (void);
164int ev_version_minor (void); 242int ev_version_minor (void);
165 243
166/* these three calls are suitable for plugging into pthread_atfork */
167void ev_prefork (void);
168void ev_postfork_parent (void);
169void ev_postfork_child (void);
170
171extern ev_tstamp ev_now; /* time w.r.t. timers and the eventloop, updated after each poll */
172ev_tstamp ev_time (void); 244ev_tstamp ev_time (void);
245
246/* Sets the allocation function to use, works like realloc.
247 * It is used to allocate and free memory.
248 * If it returns zero when memory needs to be allocated, the library might abort
249 * or take some potentially destructive action.
250 * The default is your system realloc function.
251 */
252void ev_set_allocator (void *(*cb)(void *ptr, long size));
253
254/* set the callback function to call on a
255 * retryable syscall error
256 * (such as failed select, poll, epoll_wait)
257 */
258void ev_set_syserr_cb (void (*cb)(const char *msg));
259
260# if EV_MULTIPLICITY
261/* the default loop is the only one that handles signals and child watchers */
262/* you can call this as often as you like */
263struct ev_loop *ev_default_loop (int methods); /* returns default loop */
264
265/* create and destroy alternative loops that don't handle signals */
266struct ev_loop *ev_loop_new (int methods);
267void ev_loop_destroy (EV_P);
268void ev_loop_fork (EV_P);
269
270ev_tstamp ev_now (EV_P); /* time w.r.t. timers and the eventloop, updated after each poll */
271
272# else
273
274int ev_default_loop (int methods); /* returns true when successful */
275
276static ev_tstamp
277ev_now ()
278{
279 extern ev_tstamp ev_rt_now;
280
281 return ev_rt_now;
282}
283# endif
284
285void ev_default_destroy (void); /* destroy the default loop */
286/* this needs to be called after fork, to duplicate the default loop */
287/* if you create alternative loops you have to call ev_loop_fork on them */
288/* you can call it in either the parent or the child */
289/* you can actually call it at any time, anywhere :) */
290void ev_default_fork (void);
291
292int ev_method (EV_P);
173#endif 293#endif
174 294
175#define EVLOOP_NONBLOCK 1 /* do not block/wait */ 295#define EVLOOP_NONBLOCK 1 /* do not block/wait */
176#define EVLOOP_ONESHOT 2 /* block *once* only */ 296#define EVLOOP_ONESHOT 2 /* block *once* only */
297#define EVUNLOOP_ONCE 1 /* unloop once */
298#define EVUNLOOP_ALL 2 /* unloop all loops */
299
177#if EV_PROTOTYPES 300#if EV_PROTOTYPES
178void ev_loop (int flags); 301void ev_loop (EV_P_ int flags);
179extern int ev_loop_done; /* set to 1 to break out of event loop, set to 2 to break out of all event loops */ 302void ev_unloop (EV_P_ int how); /* set to 1 to break out of event loop, set to 2 to break out of all event loops */
303
304/*
305 * ref/unref can be used to add or remove a refcount on the mainloop. every watcher
306 * keeps one reference. if you have a long-runing watcher you never unregister that
307 * should not keep ev_loop from running, unref() after starting, and ref() before stopping.
308 */
309void ev_ref (EV_P);
310void ev_unref (EV_P);
180 311
181/* convinience function, wait for a single event, without registering an event watcher */ 312/* convinience function, wait for a single event, without registering an event watcher */
182/* if timeout is < 0, do wait indefinitely */ 313/* if timeout is < 0, do wait indefinitely */
183void ev_once (int fd, int events, ev_tstamp timeout, void (*cb)(int revents, void *arg), void *arg); 314void ev_once (EV_P_ int fd, int events, ev_tstamp timeout, void (*cb)(int revents, void *arg), void *arg);
184#endif 315#endif
185 316
186/* these may evaluate ev multiple times, and the other arguments at most once */ 317/* these may evaluate ev multiple times, and the other arguments at most once */
187/* either use evw_init + evXXX_set, or the evXXX_init macro, below, to first initialise a watcher */ 318/* either use ev_init + ev_TYPE_set, or the ev_TYPE_init macro, below, to first initialise a watcher */
188#define evw_init(ev,cb_) do { (ev)->active = 0; (ev)->pending = 0; (ev)->cb = (cb_); } while (0) 319#define ev_init(ev,cb_) do { \
320 ((struct ev_watcher *)(void *)(ev))->active = \
321 ((struct ev_watcher *)(void *)(ev))->pending = \
322 ((struct ev_watcher *)(void *)(ev))->priority = 0; \
323 ev_set_cb ((ev), cb_); \
324} while (0)
189 325
190#define evio_set(ev,fd_,events_) do { (ev)->fd = (fd_); (ev)->events = (events_); } while (0) 326#define ev_io_set(ev,fd_,events_) do { (ev)->fd = (fd_); (ev)->events = (events_); } while (0)
191#define evtimer_set(ev,after_,repeat_) do { (ev)->at = (after_); (ev)->repeat = (repeat_); } while (0) 327#define ev_timer_set(ev,after_,repeat_) do { (ev)->at = (after_); (ev)->repeat = (repeat_); } while (0)
192#define evperiodic_set(ev,at_,interval_) do { (ev)->at = (at_); (ev)->interval = (interval_); } while (0) 328#define ev_periodic_set(ev,at_,ival_,res_) do { (ev)->at = (at_); (ev)->interval = (ival_); (ev)->reschedule_cb= (res_); } while (0)
193#define evsignal_set(ev,signum_) do { (ev)->signum = (signum_); } while (0) 329#define ev_signal_set(ev,signum_) do { (ev)->signum = (signum_); } while (0)
194#define evidle_set(ev) /* nop, yes, this is a serious in-joke */ 330#define ev_idle_set(ev) /* nop, yes, this is a serious in-joke */
195#define evprepare_set(ev) /* nop, yes, this is a serious in-joke */ 331#define ev_prepare_set(ev) /* nop, yes, this is a serious in-joke */
196#define evcheck_set(ev) /* nop, yes, this is a serious in-joke */ 332#define ev_check_set(ev) /* nop, yes, this is a serious in-joke */
197#define evchild_set(ev,pid_) do { (ev)->pid = (pid_); } while (0) 333#define ev_child_set(ev,pid_) do { (ev)->pid = (pid_); } while (0)
198 334
199#define evio_init(ev,cb,fd,events) do { evw_init ((ev), (cb)); evio_set ((ev),(fd),(events)); } while (0) 335#define ev_io_init(ev,cb,fd,events) do { ev_init ((ev), (cb)); ev_io_set ((ev),(fd),(events)); } while (0)
200#define evtimer_init(ev,cb,after,repeat) do { evw_init ((ev), (cb)); evtimer_set ((ev),(after),(repeat)); } while (0) 336#define ev_timer_init(ev,cb,after,repeat) do { ev_init ((ev), (cb)); ev_timer_set ((ev),(after),(repeat)); } while (0)
201#define evperiodic_init(ev,cb,at,interval) do { evw_init ((ev), (cb)); evperiodic_set ((ev),(at),(interval)); } while (0) 337#define ev_periodic_init(ev,cb,at,ival,res) do { ev_init ((ev), (cb)); ev_periodic_set ((ev),(at),(ival),(res)); } while (0)
202#define evsignal_init(ev,cb,signum) do { evw_init ((ev), (cb)); evsignal_set ((ev), (signum)); } while (0) 338#define ev_signal_init(ev,cb,signum) do { ev_init ((ev), (cb)); ev_signal_set ((ev), (signum)); } while (0)
203#define evidle_init(ev,cb) do { evw_init ((ev), (cb)); evidle_set ((ev)); } while (0) 339#define ev_idle_init(ev,cb) do { ev_init ((ev), (cb)); ev_idle_set ((ev)); } while (0)
204#define evprepare_init(ev,cb) do { evw_init ((ev), (cb)); evprepare_set ((ev)); } while (0) 340#define ev_prepare_init(ev,cb) do { ev_init ((ev), (cb)); ev_prepare_set ((ev)); } while (0)
205#define evcheck_init(ev,cb) do { evw_init ((ev), (cb)); evcheck_set ((ev)); } while (0) 341#define ev_check_init(ev,cb) do { ev_init ((ev), (cb)); ev_check_set ((ev)); } while (0)
206#define evchild_init(ev,cb,pid) do { evw_init ((ev), (cb)); evchild_set ((ev),(pid)); } while (0) 342#define ev_child_init(ev,cb,pid) do { ev_init ((ev), (cb)); ev_child_set ((ev),(pid)); } while (0)
207 343
344#define ev_is_pending(ev) (0 + ((struct ev_watcher *)(void *)(ev))->pending) /* ro, true when watcher is waiting for callback invocation */
208#define ev_is_active(ev) (0 + (ev)->active) /* true when the watcher has been started */ 345#define ev_is_active(ev) (0 + ((struct ev_watcher *)(void *)(ev))->active) /* ro, true when the watcher has been started */
346
347#define ev_priority(ev) ((struct ev_watcher *)(void *)(ev))->priority /* rw */
348#define ev_cb(ev) (ev)->cb /* rw */
349#define ev_set_priority(ev,pri) ev_priority (ev) = (pri)
350
351#ifndef ev_set_cb
352# define ev_set_cb(ev,cb_) ev_cb (ev) = (cb_)
353#endif
209 354
210/* stopping (enabling, adding) a watcher does nothing if it is already running */ 355/* stopping (enabling, adding) a watcher does nothing if it is already running */
211/* stopping (disabling, deleting) a watcher does nothing unless its already running */ 356/* stopping (disabling, deleting) a watcher does nothing unless its already running */
212#if EV_PROTOTYPES 357#if EV_PROTOTYPES
358
359/* feeds an event into a watcher as if the event actually occured */
360/* accepts any ev_watcher type */
361void ev_feed_event (EV_P_ void *w, int revents);
362void ev_feed_fd_event (EV_P_ int fd, int revents);
363void ev_feed_signal_event (EV_P_ int signum);
364
213void evio_start (struct ev_io *w); 365void ev_io_start (EV_P_ struct ev_io *w);
214void evio_stop (struct ev_io *w); 366void ev_io_stop (EV_P_ struct ev_io *w);
215 367
216void evtimer_start (struct ev_timer *w); 368void ev_timer_start (EV_P_ struct ev_timer *w);
217void evtimer_stop (struct ev_timer *w); 369void ev_timer_stop (EV_P_ struct ev_timer *w);
218void evtimer_again (struct ev_timer *w); /* stops if active and no repeat, restarts if active and repeating, starts if inactive and repeating */ 370/* stops if active and no repeat, restarts if active and repeating, starts if inactive and repeating */
371void ev_timer_again (EV_P_ struct ev_timer *w);
219 372
220void evperiodic_start (struct ev_periodic *w); 373void ev_periodic_start (EV_P_ struct ev_periodic *w);
221void evperiodic_stop (struct ev_periodic *w); 374void ev_periodic_stop (EV_P_ struct ev_periodic *w);
375void ev_periodic_again (EV_P_ struct ev_periodic *w);
222 376
223void evsignal_start (struct ev_signal *w);
224void evsignal_stop (struct ev_signal *w);
225
226void evidle_start (struct ev_idle *w); 377void ev_idle_start (EV_P_ struct ev_idle *w);
227void evidle_stop (struct ev_idle *w); 378void ev_idle_stop (EV_P_ struct ev_idle *w);
228 379
229void evprepare_start (struct ev_prepare *w); 380void ev_prepare_start (EV_P_ struct ev_prepare *w);
230void evprepare_stop (struct ev_prepare *w); 381void ev_prepare_stop (EV_P_ struct ev_prepare *w);
231 382
232void evcheck_start (struct ev_check *w); 383void ev_check_start (EV_P_ struct ev_check *w);
233void evcheck_stop (struct ev_check *w); 384void ev_check_stop (EV_P_ struct ev_check *w);
234 385
386/* only supported in the default loop */
387void ev_signal_start (EV_P_ struct ev_signal *w);
388void ev_signal_stop (EV_P_ struct ev_signal *w);
389
390/* only supported in the default loop */
235void evchild_start (struct ev_child *w); 391void ev_child_start (EV_P_ struct ev_child *w);
236void evchild_stop (struct ev_child *w); 392void ev_child_stop (EV_P_ struct ev_child *w);
237#endif 393#endif
238 394
395#ifdef __cplusplus
396}
239#endif 397#endif
240 398
399#endif
400

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