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Comparing rxvt-unicode/src/iom.C (file contents):
Revision 1.8 by pcg, Fri Jan 16 22:11:09 2004 UTC vs.
Revision 1.36 by root, Thu Dec 14 03:18:34 2006 UTC

1/* 1/*
2 iom.C -- generic I/O multiplexor 2 iom.C -- generic I/O multiplexer
3 Copyright (C) 2003 Marc Lehmann <pcg@goof.com> 3 Copyright (C) 2003-2006 Marc Lehmann <gvpe@schmorp.de>
4 4
5 This file is part of GVPE.
6
5 This program is free software; you can redistribute it and/or modify 7 GVPE is free software; you can redistribute it and/or modify
6 it under the terms of the GNU General Public License as published by 8 it under the terms of the GNU General Public License as published by
7 the Free Software Foundation; either version 2 of the License, or 9 the Free Software Foundation; either version 2 of the License, or
8 (at your option) any later version. 10 (at your option) any later version.
9 11
10 This program is distributed in the hope that it will be useful, 12 This program is distributed in the hope that it will be useful,
11 but WITHOUT ANY WARRANTY; without even the implied warranty of 13 but WITHOUT ANY WARRANTY; without even the implied warranty of
12 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the 14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
13 GNU General Public License for more details. 15 GNU General Public License for more details.
14 16
15 You should have received a copy of the GNU General Public License 17 You should have received a copy of the GNU General Public License
16 along with this program; if not, write to the Free Software 18 along with gvpe; if not, write to the Free Software
17 Foundation, Inc. 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA 19 Foundation, Inc. 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
18*/ 20*/
19 21
20#include "../config.h" 22#include "iom.h"
21 23
22#include <cstdio> 24#include <cstdio>
23#include <cstdlib> 25#include <cstdlib>
24#include <cerrno> 26#include <cerrno>
27#include <cassert>
25 28
29#include <sys/types.h>
30#include <sys/time.h>
31
32#if 1 // older unices need these includes for select (2)
33# include <unistd.h>
34# include <time.h>
35#endif
36
37#if IOM_CHILD
38# include <sys/wait.h>
39#endif
40
41#if IOM_SIG
42# include <csignal>
43# include <fcntl.h>
44#endif
45
46// if the BSDs would at least be marginally POSIX-compatible.. *sigh*
47// until that happens, sys/select.h must come last
26#include <sys/select.h> 48#include <sys/select.h>
27#include <sys/time.h>
28 49
29#include "iom.h" 50#define TIMEVAL timeval
51#define TV_FRAC tv_usec
52#define TV_MULT 1000000L
30 53
31// TSTAMP_MAX must still fit into a positive struct timeval 54#if IOM_IO
32#define TSTAMP_MAX (double)(1UL<<31) 55static io_manager_vec<io_watcher> iow;
56#endif
57#if IOM_CHECK
58static io_manager_vec<check_watcher> cw;
59#endif
60#if IOM_TIME
61static io_manager_vec<time_watcher> tw;
62#endif
63#if IOM_IDLE
64static io_manager_vec<idle_watcher> iw;
65#endif
66#if IOM_SIG
67static int sigpipe[2]; // signal signalling pipe
68static sigset_t sigs;
69struct sig_vec : io_manager_vec<sig_watcher> {
70 int pending;
71 sig_vec ()
72 : pending (false)
73 { }
74};
75static vector<sig_vec *> sw;
76#endif
77#if IOM_CHILD
78static io_manager_vec<child_watcher> pw;
79#endif
80
81// this is a dummy time watcher to ensure that the first
82// time watcher is _always_ valid, this gets rid of a lot
83// of null-pointer-checks
84// (must come _before_ iom is being defined)
85static struct tw0 : time_watcher
86{
87 void cb (time_watcher &w)
88 {
89 // should never get called
90 // reached end-of-time, or tstamp has a bogus definition,
91 // or compiler initialisation order broken, or something else :)
92 abort ();
93 }
94
95 tw0 ()
96 : time_watcher (this, &tw0::cb)
97 { }
98} tw0;
33 99
34tstamp NOW; 100tstamp NOW;
101
102#if IOM_CHILD
103// sig_watcher for child signal(s)
104static struct sw0 : sig_watcher
105{
106 void cb (sig_watcher &w)
107 {
108 // SIGCHLD, call corresponding watchera
109 pid_t pid;
110 int status;
111
112 while ((pid = waitpid (-1, &status, WNOHANG)) > 0)
113 for (int i = pw.size (); i--; )
114 {
115 child_watcher *w = pw[i];
116
117 if (!w)
118 pw.erase_unordered (i);
119 else if (w->pid == pid)
120 {
121 io_manager::unreg (*w);
122 w->call (*w, status);
123 }
124 }
125 }
126
127 sw0 ()
128 : sig_watcher (this, &sw0::cb)
129 { }
130} sw0;
131#endif
132
133#if IOM_TIME
134tstamp io_manager::now ()
135{
136 struct timeval tv;
137
138 gettimeofday (&tv, 0);
139 return (tstamp)tv.tv_sec + (tstamp)tv.tv_usec / 1000000.;
140}
141
142void io_manager::set_now ()
143{
144 NOW = now ();
145}
146#endif
147
35static bool iom_valid; 148static bool iom_valid;
36io_manager iom; 149
150// used for initialisation only
151static struct init {
152 init ()
153 {
154 iom_valid = true;
155
156#if IOM_SIG
157 sigemptyset (&sigs);
158
159 if (pipe (sigpipe))
160 {
161 perror ("io_manager: unable to create signal pipe, aborting.");
162 abort ();
163 }
164
165 fcntl (sigpipe[0], F_SETFL, O_NONBLOCK); fcntl (sigpipe[0], F_SETFD, FD_CLOEXEC);
166 fcntl (sigpipe[1], F_SETFL, O_NONBLOCK); fcntl (sigpipe[1], F_SETFD, FD_CLOEXEC);
167#endif
168
169#if IOM_CHILD
170 sw0.start (SIGCHLD);
171#endif
172
173#if IOM_TIME
174 io_manager::set_now ();
175
176 tw0.start (TSTAMP_MAX);
177#endif
178 }
179
180 ~init ()
181 {
182 iom_valid = false;
183 }
184
185 static void required ();
186} init;
187
188void
189init::required ()
190{
191 if (!iom_valid)
192 {
193 write (2, "io_manager: early registration attempt, aborting.\n",
194 sizeof ("io_manager: early registration attempt, aborting.\n") - 1);
195 abort ();
196 }
197}
37 198
38template<class watcher> 199template<class watcher>
39void io_manager::reg (watcher *w, simplevec<watcher *> &queue) 200void io_manager::reg (watcher &w, io_manager_vec<watcher> &queue)
40{ 201{
41 if (!iom_valid) 202 init::required ();
42 abort ();
43 203
44 if (!w->active) 204 if (!w.active)
45 { 205 {
46 queue.push_back (w); 206 queue.push_back (&w);
47 w->active = queue.size (); 207 w.active = queue.size ();
48 } 208 }
49} 209}
50 210
51template<class watcher> 211template<class watcher>
52void io_manager::unreg (watcher *w, simplevec<watcher *> &queue) 212void io_manager::unreg (watcher &w, io_manager_vec<watcher> &queue)
53{ 213{
54 if (!iom_valid) 214 if (!iom_valid)
55 return; 215 return;
56 216
57 if (w->active) 217 if (w.active)
58 { 218 {
59 queue [w->active - 1] = 0; 219 queue [w.active - 1] = 0;
60 w->active = 0; 220 w.active = 0;
61 } 221 }
62} 222}
63 223
64#if IOM_TIME 224#if IOM_TIME
65void time_watcher::trigger () 225void time_watcher::trigger ()
66{ 226{
67 call (*this); 227 call (*this);
68 228 io_manager::reg (*this);
69 iom.reg (this);
70} 229}
71 230
72void io_manager::reg (time_watcher *w) { reg (w, tw); } 231void io_manager::reg (time_watcher &w) { io_manager::reg (w, tw); }
73void io_manager::unreg (time_watcher *w) { unreg (w, tw); } 232void io_manager::unreg (time_watcher &w) { io_manager::unreg (w, tw); }
74#endif 233#endif
75 234
76#if IOM_IO 235#if IOM_IO
77void io_manager::reg (io_watcher *w) { reg (w, iow); } 236void io_manager::reg (io_watcher &w) { io_manager::reg (w, iow); }
78void io_manager::unreg (io_watcher *w) { unreg (w, iow); } 237void io_manager::unreg (io_watcher &w) { io_manager::unreg (w, iow); }
79#endif 238#endif
80 239
81#if IOM_CHECK 240#if IOM_CHECK
82void io_manager::reg (check_watcher *w) { reg (w, cw); } 241void io_manager::reg (check_watcher &w) { io_manager::reg (w, cw); }
83void io_manager::unreg (check_watcher *w) { unreg (w, cw); } 242void io_manager::unreg (check_watcher &w) { io_manager::unreg (w, cw); }
84#endif 243#endif
85 244
86#if IOM_IDLE 245#if IOM_IDLE
87void io_manager::reg (idle_watcher *w) { reg (w, iw); } 246void io_manager::reg (idle_watcher &w) { io_manager::reg (w, iw); }
88void io_manager::unreg (idle_watcher *w) { unreg (w, iw); } 247void io_manager::unreg (idle_watcher &w) { io_manager::unreg (w, iw); }
89#endif 248#endif
90 249
91#if IOM_TIME 250#if IOM_SIG
92inline void set_now (void) 251static void
252sighandler (int signum)
93{ 253{
94 struct timeval tv; 254 sw [signum - 1]->pending = true;
95 255
96 gettimeofday (&tv, 0); 256 // we use a pipe for signal notifications, as most current
97 257 // OSes (Linux...) do not implement pselect correctly. ugh.
98 NOW = (tstamp)tv.tv_sec + (tstamp)tv.tv_usec / 1000000; 258 char ch = signum; // actual content not used
99#endif 259 write (sigpipe[1], &ch, 1);
100} 260}
261
262void io_manager::reg (sig_watcher &w)
263{
264 init::required ();
265
266 assert (0 < w.signum);
267
268 sw.reserve (w.signum);
269
270 while (sw.size () < w.signum) // pathetic
271 sw.push_back (0);
272
273 sig_vec *&sv = sw[w.signum - 1];
274
275 if (!sv)
276 {
277 sv = new sig_vec;
278
279 sigaddset (&sigs, w.signum);
280 sigprocmask (SIG_BLOCK, &sigs, NULL);
281
282 struct sigaction sa;
283 sa.sa_handler = sighandler;
284 sigfillset (&sa.sa_mask);
285 sa.sa_flags = SA_RESTART;
286
287 if (sigaction (w.signum, &sa, 0))
288 {
289 perror ("io_manager: error while installing signal handler, ignoring.");
290 abort ();
291 }
292
293 }
294
295 io_manager::reg (w, *sv);
296}
297
298void io_manager::unreg (sig_watcher &w)
299{
300 if (!w.active || !iom_valid)
301 return;
302
303 assert (0 < w.signum && w.signum <= sw.size ());
304
305 io_manager::unreg (w, *sw[w.signum - 1]);
306}
307
308void sig_watcher::start (int signum)
309{
310 stop ();
311 this->signum = signum;
312 io_manager::reg (*this);
313}
314#endif
315
316#if IOM_CHILD
317void io_manager::reg (child_watcher &w) { io_manager::reg (w, pw); }
318void io_manager::unreg (child_watcher &w) { io_manager::unreg (w, pw); }
319#endif
101 320
102void io_manager::loop () 321void io_manager::loop ()
103{ 322{
323 init::required ();
324
104#if IOM_TIME 325#if IOM_TIME
105 set_now (); 326 set_now ();
106#endif 327#endif
107 328
108 for (;;) 329 for (;;)
109 { 330 {
110 struct timeval *to = 0;
111 struct timeval tval;
112 331
113#if IOM_IDLE 332#if IOM_TIME
114 if (iw.size ()) 333 // call pending time watchers
115 { 334 {
116 tval.tv_sec = 0; 335 bool activity;
117 tval.tv_usec = 0; 336
118 to = &tval;
119 } 337 do
120 else
121#endif
122 {
123#if IOM_TIME
124 time_watcher *next;
125
126 for (;;)
127 { 338 {
128 next = tw[0]; // the first time-watcher must exist at ALL times 339 activity = false;
129 340
130 for (int i = tw.size (); i--; ) 341 for (int i = tw.size (); i--; )
131 if (!tw[i]) 342 if (!tw[i])
132 tw.erase_unordered (i); 343 tw.erase_unordered (i);
133 else if (tw[i]->at < next->at) 344 else if (tw[i]->at <= NOW)
134 next = tw[i];
135
136 if (next->at > NOW)
137 { 345 {
138 if (next != tw[0]) 346 time_watcher &w = *tw[i];
139 { 347
140 double diff = next->at - NOW;
141 tval.tv_sec = (int)diff;
142 tval.tv_usec = (int)((diff - tval.tv_sec) * 1000000);
143 to = &tval;
144 }
145 break; 348 unreg (w);
349 w.call (w);
350
351 activity = true;
146 } 352 }
147 else if (next->at >= 0)
148 {
149 unreg (next);
150 next->call (*next);
151 }
152 } 353 }
153#endif 354 while (activity);
154 } 355 }
356#endif
155 357
156#if IOM_CHECK 358#if IOM_CHECK
359 // call all check watchers
157 for (int i = cw.size (); i--; ) 360 for (int i = cw.size (); i--; )
158 if (!cw[i]) 361 if (!cw[i])
159 cw.erase_unordered (i); 362 cw.erase_unordered (i);
160 else 363 else
161 cw[i]->call (*cw[i]); 364 cw[i]->call (*cw[i]);
162#endif 365#endif
163 366
367 struct TIMEVAL *to = 0;
368 struct TIMEVAL tval;
369
164#if IOM_IO 370#if IOM_IDLE
371 if (iw.size ())
372 {
373 tval.tv_sec = 0;
374 tval.TV_FRAC = 0;
375 to = &tval;
376 }
377 else
378#endif
379 {
380#if IOM_TIME
381 // find earliest active watcher
382 time_watcher *next = tw[0]; // the first time-watcher must exist at ALL times
383
384 for (io_manager_vec<time_watcher>::const_iterator i = tw.end (); i-- > tw.begin (); )
385 if (*i && (*i)->at < next->at)
386 next = *i;
387
388 if (next->at > NOW && next != tw[0])
389 {
390 double diff = next->at - NOW;
391 tval.tv_sec = (int)diff;
392 tval.TV_FRAC = (int) ((diff - tval.tv_sec) * TV_MULT);
393 to = &tval;
394 }
395 }
396#endif
397
398#if IOM_IO || IOM_SIG
165 fd_set rfd, wfd, efd; 399 fd_set rfd, wfd;
166 400
167 FD_ZERO (&rfd); 401 FD_ZERO (&rfd);
168 FD_ZERO (&wfd); 402 FD_ZERO (&wfd);
169 403
170 int fds = 0; 404 int fds = 0;
171 405
406# if IOM_IO
172 for (io_watcher **i = iow.end (); i-- > iow.begin (); ) 407 for (io_manager_vec<io_watcher>::const_iterator i = iow.end (); i-- > iow.begin (); )
173 if (*i) 408 if (*i)
174 { 409 {
175 if ((*i)->events & EVENT_READ ) FD_SET ((*i)->fd, &rfd); 410 if ((*i)->events & EVENT_READ ) FD_SET ((*i)->fd, &rfd);
176 if ((*i)->events & EVENT_WRITE) FD_SET ((*i)->fd, &wfd); 411 if ((*i)->events & EVENT_WRITE) FD_SET ((*i)->fd, &wfd);
177 412
178 if ((*i)->fd >= fds) fds = (*i)->fd + 1; 413 if ((*i)->fd >= fds) fds = (*i)->fd + 1;
179 } 414 }
415# endif
180 416
181 if (!to && !fds) //TODO: also check idle_watchers and check_watchers 417 if (!to && !fds) //TODO: also check idle_watchers and check_watchers?
182 break; // no events 418 break; // no events
183 419
420# if IOM_SIG
421 FD_SET (sigpipe[0], &rfd);
422 if (sigpipe[0] >= fds) fds = sigpipe[0] + 1;
423# endif
424
425# if IOM_SIG
426 // there is no race, as we use a pipe for signals, so select
427 // will return if a signal is caught.
428 sigprocmask (SIG_UNBLOCK, &sigs, NULL);
429# endif
184 fds = select (fds, &rfd, &wfd, &efd, to); 430 fds = select (fds, &rfd, &wfd, NULL, to);
431# if IOM_SIG
432 sigprocmask (SIG_BLOCK, &sigs, NULL);
433# endif
434
185# if IOM_TIME 435# if IOM_TIME
436 {
437 // update time, try to compensate for gross non-monotonic time changes
438 tstamp diff = NOW;
186 set_now (); 439 set_now ();
440 diff = NOW - diff;
441
442 if (diff < 0)
443 for (io_manager_vec<time_watcher>::const_iterator i = tw.end (); i-- > tw.begin (); )
444 if (*i)
445 (*i)->at += diff;
446 }
187# endif 447# endif
188 448
189 if (fds > 0) 449 if (fds > 0)
190 for (int i = iow.size (); i--; ) 450 {
191 if (!iow[i]) 451# if IOM_SIG
192 iow.erase_unordered (i); 452 if (FD_ISSET (sigpipe[0], &rfd))
193 else
194 { 453 {
195 short revents = iow[i]->events; 454 char ch;
196 455
197 if (!FD_ISSET (iow[i]->fd, &rfd)) revents &= ~EVENT_READ; 456 while (read (sigpipe[0], &ch, 1) > 0)
198 if (!FD_ISSET (iow[i]->fd, &wfd)) revents &= ~EVENT_WRITE; 457 ;
199 458
200 if (revents) 459 for (vector<sig_vec *>::iterator svp = sw.end (); svp-- > sw.begin (); )
201 iow[i]->call (*iow[i], revents); 460 if (*svp && (*svp)->pending)
461 {
462 sig_vec &sv = **svp;
463 for (int i = sv.size (); i--; )
464 if (!sv[i])
465 sv.erase_unordered (i);
466 else
467 sv[i]->call (*sv[i]);
468
469 sv.pending = false;
470 }
202 } 471 }
472# endif
473
474# if IOM_IO
475 for (int i = iow.size (); i--; )
476 if (!iow[i])
477 iow.erase_unordered (i);
478 else
479 {
480 io_watcher &w = *iow[i];
481 short revents = w.events;
482
483 if (!FD_ISSET (w.fd, &rfd)) revents &= ~EVENT_READ;
484 if (!FD_ISSET (w.fd, &wfd)) revents &= ~EVENT_WRITE;
485
486 if (revents)
487 w.call (w, revents);
488 }
489#endif
490 }
203 else if (fds < 0 && errno != EINTR) 491 else if (fds < 0 && errno != EINTR)
204 { 492 {
205 perror ("Error while waiting for I/O or time event"); 493 perror ("io_manager: fatal error while waiting for I/O or time event, aborting.");
206 abort (); 494 abort ();
207 } 495 }
208#if IOM_IDLE 496#if IOM_IDLE
209 else 497 else
210 for (int i = iw.size (); i--; ) 498 for (int i = iw.size (); i--; )
224 break; 512 break;
225#endif 513#endif
226 } 514 }
227} 515}
228 516
229// this is a dummy time watcher to ensure that the first
230// time watcher is _always_ valid, this gets rid of a lot
231// of null-pointer-checks
232static struct tw0 : time_watcher {
233 void cb (time_watcher &w)
234 {
235 // should never get called
236 // reached end-of-time, or tstamp has a bogus definition :)
237 abort ();
238 }
239
240 tw0()
241 : time_watcher (this, &tw0::cb)
242 { }
243} tw0;
244
245io_manager::io_manager ()
246{
247 iom_valid = true;
248
249#if IOM_TIME
250 set_now ();
251
252 tw0.start (TSTAMP_MAX);
253#endif
254}
255
256io_manager::~io_manager ()
257{
258 iom_valid = false;
259}
260

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