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Comparing libev/event.c (file contents):
Revision 1.1 by root, Thu Nov 1 15:39:16 2007 UTC vs.
Revision 1.19 by root, Tue Nov 6 16:51:20 2007 UTC

29 * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 29 * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
30 */ 30 */
31 31
32#include <stddef.h> 32#include <stddef.h>
33#include <stdlib.h> 33#include <stdlib.h>
34#include <assert.h>
35
36#ifndef WIN32
34#include <sys/time.h> 37# include <sys/time.h>
38#endif
35 39
40#include "ev.h"
36#include "event.h" 41#include "event.h"
37 42
43#if EV_MULTIPLICITY
44# define dLOOPev struct ev_loop *loop = (struct ev_loop *)ev->ev_base
45# define dLOOPbase struct ev_loop *loop = (struct ev_loop *)base
46#else
47# define dLOOPev
48# define dLOOPbase
49#endif
50
51/* never accessed, will always be cast from/to ev_loop */
38struct event_base 52struct event_base
39{ 53{
40 int dummy; 54 int dummy;
41}; 55};
42 56
43static int x_actives;
44
45static struct event_base x_base, *x_cur; 57static struct event_base *x_cur;
46 58
47static void 59static void
48tv_set (struct timeval *tv, ev_tstamp at) 60tv_set (struct timeval *tv, ev_tstamp at)
49{ 61{
50 tv->tv_sec = (long)at; 62 tv->tv_sec = (long)at;
72 return "libev"; 84 return "libev";
73} 85}
74 86
75void *event_init (void) 87void *event_init (void)
76{ 88{
77 if (ev_init (0)) 89#if EV_MULTIPLICITY
78 return x_cur = &x_base; 90 if (x_cur)
91 x_cur = (struct event_base *)ev_loop_new (EVMETHOD_AUTO);
92 else
93 x_cur = (struct event_base *)ev_default_loop (EVMETHOD_AUTO);
94#else
95 assert (("multiple event bases not supported when not compiled with EV_MULTIPLICITY", !x_cur));
79 96
97 x_cur = (struct event_base *)(long)ev_default_loop (EVMETHOD_AUTO);
98#endif
99
80 return 0; 100 return x_cur;
81} 101}
82 102
83void event_base_free (struct event_base *base) 103void event_base_free (struct event_base *base)
84{ 104{
105 dLOOPbase;
106
107#if EV_MULTIPLICITY
108 if (ev_default_loop (EVMETHOD_AUTO) != loop)
109 ev_loop_destroy (loop);
110#endif
111}
112
113int event_dispatch (void)
114{
115 return event_base_dispatch (x_cur);
116}
117
118#ifdef EV_STANDALONE
119void event_set_log_callback (event_log_cb cb)
120{
85 /* nop */ 121 /* nop */
86} 122}
87 123#endif
88int event_dispatch (void)
89{
90 return event_base_dispatch (x_cur);
91}
92
93void event_set_log_callback (event_log_cb cb)
94{
95 /* nop */
96}
97 124
98int event_loop (int flags) 125int event_loop (int flags)
99{ 126{
100 return event_base_loop (x_cur, flags); 127 return event_base_loop (x_cur, flags);
101} 128}
102 129
103int event_loopexit (struct timeval *tv) 130int event_loopexit (struct timeval *tv)
104{ 131{
105 event_base_loopexit (x_cur, tv); 132 return event_base_loopexit (x_cur, tv);
106} 133}
107 134
108static void 135static void
109x_cb (struct event *ev, int revents) 136x_cb (struct event *ev, int revents)
110{ 137{
111 if (ev_is_active (&ev->sig))
112 {
113 ev_signal_stop (&ev->sig);
114 --x_actives;
115 }
116
117 if (!(ev->ev_events & EV_PERSIST) && ev_is_active (&ev->io))
118 {
119 ev_io_stop (&ev->io);
120 --x_actives;
121 }
122
123 revents &= EV_READ | EV_WRITE | EV_TIMEOUT | EV_SIGNAL; 138 revents &= EV_READ | EV_WRITE | EV_TIMEOUT | EV_SIGNAL;
124
125 if (revents & EV_TIMEOUT)
126 --x_actives;
127 139
128 ev->ev_res = revents; 140 ev->ev_res = revents;
129 ev->ev_callback (ev->ev_fd, revents, ev->ev_arg); 141 ev->ev_callback (ev->ev_fd, revents, ev->ev_arg);
130} 142}
131 143
132static void 144static void
133x_cb_io (struct ev_io *w, int revents)
134{
135 x_cb ((struct event *)(((char *)w) - offsetof (struct event, io)), revents);
136}
137
138static void
139x_cb_to (struct ev_timer *w, int revents)
140{
141 x_cb ((struct event *)(((char *)w) - offsetof (struct event, to)), revents);
142}
143
144static void
145x_cb_sig (struct ev_signal *w, int revents) 145x_cb_sig (EV_P_ struct ev_signal *w, int revents)
146{ 146{
147 x_cb ((struct event *)(((char *)w) - offsetof (struct event, sig)), revents); 147 x_cb ((struct event *)(((char *)w) - offsetof (struct event, iosig.sig)), revents);
148}
149
150static void
151x_cb_io (EV_P_ struct ev_io *w, int revents)
152{
153 struct event *ev = (struct event *)(((char *)w) - offsetof (struct event, iosig.io));
154
155 if (!(ev->ev_events & EV_PERSIST) && ev_is_active (w))
156 ev_io_stop (EV_A_ w);
157
158 x_cb (ev, revents);
159}
160
161static void
162x_cb_to (EV_P_ struct ev_timer *w, int revents)
163{
164 struct event *ev = (struct event *)(((char *)w) - offsetof (struct event, to));
165
166 event_del (ev);
167
168 x_cb (ev, revents);
148} 169}
149 170
150void event_set (struct event *ev, int fd, short events, void (*cb)(int, short, void *), void *arg) 171void event_set (struct event *ev, int fd, short events, void (*cb)(int, short, void *), void *arg)
151{ 172{
173 if (events & EV_SIGNAL)
174 ev_watcher_init (&ev->iosig.sig, x_cb_sig);
175 else
152 ev_watcher_init (&ev->io, x_cb_io); 176 ev_watcher_init (&ev->iosig.io, x_cb_io);
177
153 ev_watcher_init (&ev->to, x_cb_to); 178 ev_watcher_init (&ev->to, x_cb_to);
154 ev_watcher_init (&ev->sig, x_cb_sig);
155 179
156 ev->ev_base = x_cur; 180 ev->ev_base = x_cur; /* not threadsafe, but its like libevent works */
157 ev->ev_fd = fd; 181 ev->ev_fd = fd;
158 ev->ev_events = events; 182 ev->ev_events = events;
159 ev->ev_pri = 0; 183 ev->ev_pri = 0;
160 ev->ev_callback = cb; 184 ev->ev_callback = cb;
161 ev->ev_arg = arg; 185 ev->ev_arg = arg;
162 ev->ev_res = 0; 186 ev->ev_res = 0;
163} 187}
164 188
165int event_once (int fd, short events, void (*cb)(int, short, void *), void *arg, struct timeval *tv) 189int event_once (int fd, short events, void (*cb)(int, short, void *), void *arg, struct timeval *tv)
166{ 190{
167 event_base_once (x_cur, fd, events, cb, arg, tv); 191 return event_base_once (x_cur, fd, events, cb, arg, tv);
168} 192}
169 193
170int event_add (struct event *ev, struct timeval *tv) 194int event_add (struct event *ev, struct timeval *tv)
171{ 195{
196 dLOOPev;
197
198 /* disable all watchers */
199 event_del (ev);
200
201 if (ev->ev_events & EV_SIGNAL)
202 {
203 ev_signal_set (&ev->iosig.sig, ev->ev_fd);
204 ev_signal_start (EV_A_ &ev->iosig.sig);
205 }
206 else if (ev->ev_events & (EV_READ | EV_WRITE))
207 {
208 ev_io_set (&ev->iosig.io, ev->ev_fd, ev->ev_events & (EV_READ | EV_WRITE));
209 ev_io_start (EV_A_ &ev->iosig.io);
210 }
211
172 if (tv) 212 if (tv)
173 { 213 {
174 if (ev_is_active (&ev->to))
175 {
176 ev_timer_stop (&ev->to);
177 --x_actives;
178 }
179
180 ev_timer_set (&ev->to, tv_get (tv), 0.); 214 ev_timer_set (&ev->to, tv_get (tv), 0.);
181 ev_timer_start (&ev->to); 215 ev_timer_start (EV_A_ &ev->to);
182 ++x_actives;
183 }
184
185 if (ev->ev_events & (EV_READ|EV_WRITE))
186 { 216 }
187 if (ev_is_active (&ev->io))
188 {
189 ev_io_stop (&ev->io);
190 --x_actives;
191 }
192 217
193 ev_io_set (&ev->io, ev->ev_fd, ev->ev_events); 218 return 0;
194 ev_io_start (&ev->io); 219}
195 ++x_actives; 220
196 } 221int event_del (struct event *ev)
222{
223 dLOOPev;
197 224
198 if (ev->ev_events & EV_SIGNAL) 225 if (ev->ev_events & EV_SIGNAL)
199 { 226 {
227 /* sig */
228 if (ev_is_active (&ev->iosig.sig))
229 ev_signal_stop (EV_A_ &ev->iosig.sig);
230 }
231 else if (ev->ev_events & (EV_READ | EV_WRITE))
232 {
233 /* io */
200 if (ev_is_active (&ev->sig)) 234 if (ev_is_active (&ev->iosig.io))
201 {
202 ev_signal_stop (&ev->sig);
203 --x_actives;
204 }
205
206 ev_signal_set (&ev->sig, ev->ev_fd);
207 ev_signal_start (&ev->sig);
208 ++x_actives;
209 }
210
211 return 0;
212}
213
214int event_del (struct event *ev)
215{
216 if (ev_is_active (&ev->io))
217 {
218 ev_io_stop (&ev->io); 235 ev_io_stop (EV_A_ &ev->iosig.io);
219 --x_actives;
220 } 236 }
221 237
222 if (ev_is_active (&ev->to)) 238 if (ev_is_active (&ev->to))
223 {
224 ev_timer_stop (&ev->to); 239 ev_timer_stop (EV_A_ &ev->to);
225 --x_actives;
226 }
227 240
228 if (ev_is_active (&ev->sig))
229 {
230 ev_signal_stop (&ev->sig);
231 --x_actives;
232 }
233
234 return 0; 241 return 0;
235}
236
237void event_active (struct event *ev, int fd, short events)
238{
239 /* unclear what this does, likely internal-use */
240} 242}
241 243
242int event_pending (struct event *ev, short events, struct timeval *tv) 244int event_pending (struct event *ev, short events, struct timeval *tv)
243{ 245{
244 short revents; 246 short revents = 0;
247 dLOOPev;
245 248
246 if (ev->io.pending) 249
250 if (ev->ev_events & EV_SIGNAL)
251 {
252 /* sig */
253 if (ev_is_active (&ev->iosig.sig) || ev_is_pending (&ev->iosig.sig))
254 revents |= EV_SIGNAL;
255 }
256 else if (ev->ev_events & (EV_READ | EV_WRITE))
257 {
258 /* io */
259 if (ev_is_active (&ev->iosig.io) || ev_is_pending (&ev->iosig.io))
247 revents |= ev->ev_events & (EV_READ | EV_WRITE); 260 revents |= ev->ev_events & (EV_READ | EV_WRITE);
261 }
248 262
249 if (ev->to.pending) 263 if (ev->ev_events & EV_TIMEOUT || ev_is_active (&ev->to) || ev_is_pending (&ev->to))
250 { 264 {
251 revents |= EV_TIMEOUT; 265 revents |= EV_TIMEOUT;
252 266
253 if (tv) 267 if (tv)
254 tv_set (tv, ev_now); /* not sure if this is right :) */ 268 tv_set (tv, ev_now (EV_A)); /* not sure if this is right :) */
255 } 269 }
256
257 if (ev->sig.pending)
258 revents |= EV_SIGNAL;
259 270
260 return events & revents; 271 return events & revents;
261} 272}
262 273
263int event_priority_init (int npri) 274int event_priority_init (int npri)
279 return 0; 290 return 0;
280} 291}
281 292
282int event_base_loop (struct event_base *base, int flags) 293int event_base_loop (struct event_base *base, int flags)
283{ 294{
284 do 295 dLOOPbase;
285 { 296
286 ev_loop (flags | EVLOOP_ONESHOT); 297 ev_loop (EV_A_ flags);
287 }
288 while (!(flags & (EVLOOP_ONESHOT | EVLOOP_NONBLOCK)) && x_actives && !ev_loop_done);
289 298
290 return 0; 299 return 0;
291} 300}
292 301
293int event_base_dispatch (struct event_base *base) 302int event_base_dispatch (struct event_base *base)
294{ 303{
295 return event_base_loop (base, 0); 304 return event_base_loop (base, 0);
296} 305}
297 306
298static void 307static void
299x_loopexit_cb (int revents, void *arg) 308x_loopexit_cb (int revents, void *base)
300{ 309{
301 ev_loop_done = 2; 310 dLOOPbase;
311
312 ev_unloop (EV_A_ EVUNLOOP_ONCE);
302} 313}
303 314
304int event_base_loopexit (struct event_base *base, struct timeval *tv) 315int event_base_loopexit (struct event_base *base, struct timeval *tv)
305{ 316{
306 ev_tstamp after = tv_get (tv); 317 ev_tstamp after = tv_get (tv);
318 dLOOPbase;
307 319
308 ev_once (-1, 0, after >= 0. ? after : 0., x_loopexit_cb, (void *)base); 320 ev_once (EV_A_ -1, 0, after >= 0. ? after : 0., x_loopexit_cb, (void *)base);
321
322 return -1;
309} 323}
310 324
311struct x_once 325struct x_once
312{ 326{
313 int fd; 327 int fd;
316}; 330};
317 331
318static void 332static void
319x_once_cb (int revents, void *arg) 333x_once_cb (int revents, void *arg)
320{ 334{
321 struct x_once *once = arg; 335 struct x_once *once = (struct x_once *)arg;
322 336
323 once->cb (once->fd, revents, once->arg); 337 once->cb (once->fd, revents, once->arg);
324 free (once); 338 free (once);
325} 339}
326 340
327int event_base_once (struct event_base *base, int fd, short events, void (*cb)(int, short, void *), void *arg, struct timeval *tv) 341int event_base_once (struct event_base *base, int fd, short events, void (*cb)(int, short, void *), void *arg, struct timeval *tv)
328{ 342{
329 struct x_once *once = malloc (sizeof (struct x_once)); 343 struct x_once *once = (struct x_once *)malloc (sizeof (struct x_once));
344 dLOOPbase;
330 345
331 if (!once) 346 if (!once)
332 return -1; 347 return -1;
333 348
334 once->fd = fd; 349 once->fd = fd;
335 once->cb = cb; 350 once->cb = cb;
336 once->arg = arg; 351 once->arg = arg;
337 352
338 ev_once (fd, events & (EV_READ|EV_WRITE), tv_get (tv), x_once_cb, (void *)once); 353 ev_once (EV_A_ fd, events & (EV_READ | EV_WRITE), tv_get (tv), x_once_cb, (void *)once);
339 354
340 return 0; 355 return 0;
341} 356}
342 357
343int event_base_priority_init (struct event_base *base, int npri) 358int event_base_priority_init (struct event_base *base, int npri)
344{ 359{
345 return 0; 360 /*dLOOPbase;*/
346}
347 361
362 return 0;
363}
364

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