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1 /* $OpenLDAP$ */
2 /* This work is part of OpenLDAP Software <http://www.openldap.org/>.
3  *
4  * Copyright 1998-2009 The OpenLDAP Foundation.
5  * Portions Copyright 2007 by Howard Chu, Symas Corporation.
6  * All rights reserved.
7  *
8  * Redistribution and use in source and binary forms, with or without
9  * modification, are permitted only as authorized by the OpenLDAP
10  * Public License.
11  *
12  * A copy of this license is available in the file LICENSE in the
13  * top-level directory of the distribution or, alternatively, at
14  * <http://www.OpenLDAP.org/license.html>.
15  */
16 /* Portions Copyright (c) 1995 Regents of the University of Michigan.
17  * All rights reserved.
18  *
19  * Redistribution and use in source and binary forms are permitted
20  * provided that this notice is preserved and that due credit is given
21  * to the University of Michigan at Ann Arbor. The name of the University
22  * may not be used to endorse or promote products derived from this
23  * software without specific prior written permission. This software
24  * is provided ``as is'' without express or implied warranty.
25  */
26
27 #include "portable.h"
28
29 #include <stdio.h>
30
31 #include <ac/ctype.h>
32 #include <ac/errno.h>
33 #include <ac/socket.h>
34 #include <ac/string.h>
35 #include <ac/time.h>
36 #include <ac/unistd.h>
37
38 #include "slap.h"
39 #include "ldap_pvt_thread.h"
40 #include "lutil.h"
41
42 #include "ldap_rq.h"
43
44 #if defined(HAVE_SYS_EPOLL_H) && defined(HAVE_EPOLL)
45 # include <sys/epoll.h>
46 #elif defined(SLAP_X_DEVPOLL) && defined(HAVE_SYS_DEVPOLL_H) && defined(HAVE_DEVPOLL)
47 # include <sys/types.h>
48 # include <sys/stat.h>
49 # include <fcntl.h>
50 # include <sys/devpoll.h>
51 #endif /* ! epoll && ! /dev/poll */
52
53 #ifdef HAVE_TCPD
54 int allow_severity = LOG_INFO;
55 int deny_severity = LOG_NOTICE;
56 #endif /* TCP Wrappers */
57
58 #ifdef LDAP_PF_LOCAL
59 # include <sys/stat.h>
60 /* this should go in <ldap.h> as soon as it is accepted */
61 # define LDAPI_MOD_URLEXT               "x-mod"
62 #endif /* LDAP_PF_LOCAL */
63
64 #ifdef LDAP_PF_INET6
65 int slap_inet4or6 = AF_UNSPEC;
66 #else /* ! INETv6 */
67 int slap_inet4or6 = AF_INET;
68 #endif /* ! INETv6 */
69
70 /* globals */
71 time_t starttime;
72 ber_socket_t dtblsize;
73 slap_ssf_t local_ssf = LDAP_PVT_SASL_LOCAL_SSF;
74 struct runqueue_s slapd_rq;
75
76 #ifdef LDAP_TCP_BUFFER
77 int slapd_tcp_rmem;
78 int slapd_tcp_wmem;
79 #endif /* LDAP_TCP_BUFFER */
80
81 Listener **slap_listeners = NULL;
82
83 #ifndef SLAPD_LISTEN_BACKLOG
84 #define SLAPD_LISTEN_BACKLOG 1024
85 #endif /* ! SLAPD_LISTEN_BACKLOG */
86
87 static ber_socket_t wake_sds[2]
88 #ifdef HAVE_WINSOCK
89         = { INVALID_SOCKET, INVALID_SOCKET }
90 #endif /* HAVE_WINSOCK */
91         ;
92 static int emfile;
93
94 static time_t chk_writetime;
95
96 static volatile int waking;
97 #ifdef NO_THREADS
98 #define WAKE_LISTENER(w)        do { \
99         if ((w) && ++waking < 5) { \
100                 tcp_write( SLAP_FD2SOCK(wake_sds[1]), "0", 1 ); \
101         } \
102 } while (0)
103 #else /* ! NO_THREADS */
104 #define WAKE_LISTENER(w)        do { \
105         if (w) { \
106                 tcp_write( SLAP_FD2SOCK(wake_sds[1]), "0", 1 ); \
107         } \
108 } while (0)
109 #endif /* ! NO_THREADS */
110
111 volatile sig_atomic_t slapd_shutdown = 0;
112 volatile sig_atomic_t slapd_gentle_shutdown = 0;
113 volatile sig_atomic_t slapd_abrupt_shutdown = 0;
114
115 #ifdef HAVE_WINSOCK
116 ldap_pvt_thread_mutex_t slapd_ws_mutex;
117 SOCKET *slapd_ws_sockets;
118 #define SD_READ 1
119 #define SD_WRITE        2
120 #define SD_ACTIVE       4
121 #define SD_LISTENER     8
122 #endif
123
124 static struct slap_daemon {
125         ldap_pvt_thread_mutex_t sd_mutex;
126 #ifdef HAVE_TCPD
127         ldap_pvt_thread_mutex_t sd_tcpd_mutex;
128 #endif /* TCP Wrappers */
129
130         ber_socket_t            sd_nactives;
131         int                     sd_nwriters;
132         int                     sd_nfds;
133
134 #if defined(HAVE_EPOLL)
135         struct epoll_event      *sd_epolls;
136         int                     *sd_index;
137         int                     sd_epfd;
138 #elif defined(SLAP_X_DEVPOLL) && defined(HAVE_DEVPOLL)
139         /* eXperimental */
140         struct pollfd           *sd_pollfd;
141         int                     *sd_index;
142         Listener                **sd_l;
143         int                     sd_dpfd;
144 #else /* ! epoll && ! /dev/poll */
145 #ifdef HAVE_WINSOCK
146         char    *sd_flags;
147         char    *sd_rflags;
148 #else /* ! HAVE_WINSOCK */
149         fd_set                  sd_actives;
150         fd_set                  sd_readers;
151         fd_set                  sd_writers;
152 #endif /* ! HAVE_WINSOCK */
153 #endif /* ! epoll && ! /dev/poll */
154 } slap_daemon;
155
156 /*
157  * NOTE: naming convention for macros:
158  *
159  * - SLAP_SOCK_* and SLAP_EVENT_* for public interface that deals
160  *   with file descriptors and events respectively
161  *
162  * - SLAP_<type>_* for private interface; type by now is one of
163  *   EPOLL, DEVPOLL, SELECT
164  *
165  * private interface should not be used in the code.
166  */
167 #if defined(HAVE_EPOLL)
168 /***************************************
169  * Use epoll infrastructure - epoll(4) *
170  ***************************************/
171 # define SLAP_EVENT_FNAME               "epoll"
172 # define SLAP_EVENTS_ARE_INDEXED        0
173 # define SLAP_EPOLL_SOCK_IX(s)          (slap_daemon.sd_index[(s)])
174 # define SLAP_EPOLL_SOCK_EP(s)          (slap_daemon.sd_epolls[SLAP_EPOLL_SOCK_IX(s)])
175 # define SLAP_EPOLL_SOCK_EV(s)          (SLAP_EPOLL_SOCK_EP(s).events)
176 # define SLAP_SOCK_IS_ACTIVE(s)         (SLAP_EPOLL_SOCK_IX(s) != -1)
177 # define SLAP_SOCK_NOT_ACTIVE(s)        (SLAP_EPOLL_SOCK_IX(s) == -1)
178 # define SLAP_EPOLL_SOCK_IS_SET(s, mode)        (SLAP_EPOLL_SOCK_EV(s) & (mode))
179
180 # define SLAP_SOCK_IS_READ(s)           SLAP_EPOLL_SOCK_IS_SET((s), EPOLLIN)
181 # define SLAP_SOCK_IS_WRITE(s)          SLAP_EPOLL_SOCK_IS_SET((s), EPOLLOUT)
182
183 # define SLAP_EPOLL_SOCK_SET(s, mode)   do { \
184         if ( (SLAP_EPOLL_SOCK_EV(s) & (mode)) != (mode) ) {     \
185                 SLAP_EPOLL_SOCK_EV(s) |= (mode); \
186                 epoll_ctl( slap_daemon.sd_epfd, EPOLL_CTL_MOD, (s), \
187                         &SLAP_EPOLL_SOCK_EP(s) ); \
188         } \
189 } while (0)
190
191 # define SLAP_EPOLL_SOCK_CLR(s, mode)   do { \
192         if ( (SLAP_EPOLL_SOCK_EV(s) & (mode)) ) { \
193                 SLAP_EPOLL_SOCK_EV(s) &= ~(mode);       \
194                 epoll_ctl( slap_daemon.sd_epfd, EPOLL_CTL_MOD, s, \
195                         &SLAP_EPOLL_SOCK_EP(s) ); \
196         } \
197 } while (0)
198
199 # define SLAP_SOCK_SET_READ(s)          SLAP_EPOLL_SOCK_SET(s, EPOLLIN)
200 # define SLAP_SOCK_SET_WRITE(s)         SLAP_EPOLL_SOCK_SET(s, EPOLLOUT)
201
202 # define SLAP_SOCK_CLR_READ(s)          SLAP_EPOLL_SOCK_CLR((s), EPOLLIN)
203 # define SLAP_SOCK_CLR_WRITE(s)         SLAP_EPOLL_SOCK_CLR((s), EPOLLOUT)
204
205 #  define SLAP_SOCK_SET_SUSPEND(s) \
206         ( slap_daemon.sd_suspend[SLAP_EPOLL_SOCK_IX(s)] = 1 )
207 #  define SLAP_SOCK_CLR_SUSPEND(s) \
208         ( slap_daemon.sd_suspend[SLAP_EPOLL_SOCK_IX(s)] = 0 )
209 #  define SLAP_SOCK_IS_SUSPEND(s) \
210         ( slap_daemon.sd_suspend[SLAP_EPOLL_SOCK_IX(s)] == 1 )
211
212 # define SLAP_EPOLL_EVENT_CLR(i, mode)  (revents[(i)].events &= ~(mode))
213
214 # define SLAP_EVENT_MAX                 slap_daemon.sd_nfds
215
216 /* If a Listener address is provided, store that as the epoll data.
217  * Otherwise, store the address of this socket's slot in the
218  * index array. If we can't do this add, the system is out of
219  * resources and we need to shutdown.
220  */
221 # define SLAP_SOCK_ADD(s, l)            do { \
222         int rc; \
223         SLAP_EPOLL_SOCK_IX((s)) = slap_daemon.sd_nfds; \
224         SLAP_EPOLL_SOCK_EP((s)).data.ptr = (l) ? (l) : (void *)(&SLAP_EPOLL_SOCK_IX(s)); \
225         SLAP_EPOLL_SOCK_EV((s)) = EPOLLIN; \
226         rc = epoll_ctl(slap_daemon.sd_epfd, EPOLL_CTL_ADD, \
227                 (s), &SLAP_EPOLL_SOCK_EP((s))); \
228         if ( rc == 0 ) { \
229                 slap_daemon.sd_nfds++; \
230         } else { \
231                 Debug( LDAP_DEBUG_ANY, \
232                         "daemon: epoll_ctl(ADD,fd=%d) failed, errno=%d, shutting down\n", \
233                         s, errno, 0 ); \
234                 slapd_shutdown = 2; \
235         } \
236 } while (0)
237
238 # define SLAP_EPOLL_EV_LISTENER(ptr) \
239         (((int *)(ptr) >= slap_daemon.sd_index && \
240         (int *)(ptr) <= &slap_daemon.sd_index[dtblsize]) ? 0 : 1 )
241
242 # define SLAP_EPOLL_EV_PTRFD(ptr)               (SLAP_EPOLL_EV_LISTENER(ptr) ? \
243         ((Listener *)ptr)->sl_sd : \
244         (ber_socket_t) ((int *)(ptr) - slap_daemon.sd_index))
245
246 # define SLAP_SOCK_DEL(s)               do { \
247         int fd, rc, index = SLAP_EPOLL_SOCK_IX((s)); \
248         if ( index < 0 ) break; \
249         rc = epoll_ctl(slap_daemon.sd_epfd, EPOLL_CTL_DEL, \
250                 (s), &SLAP_EPOLL_SOCK_EP((s))); \
251         slap_daemon.sd_epolls[index] = \
252                 slap_daemon.sd_epolls[slap_daemon.sd_nfds-1]; \
253         fd = SLAP_EPOLL_EV_PTRFD(slap_daemon.sd_epolls[index].data.ptr); \
254         slap_daemon.sd_index[fd] = index; \
255         slap_daemon.sd_index[(s)] = -1; \
256         slap_daemon.sd_nfds--; \
257 } while (0)
258
259 # define SLAP_EVENT_CLR_READ(i)         SLAP_EPOLL_EVENT_CLR((i), EPOLLIN)
260 # define SLAP_EVENT_CLR_WRITE(i)        SLAP_EPOLL_EVENT_CLR((i), EPOLLOUT)
261
262 # define SLAP_EPOLL_EVENT_CHK(i, mode)  (revents[(i)].events & mode)
263
264 # define SLAP_EVENT_IS_READ(i)          SLAP_EPOLL_EVENT_CHK((i), EPOLLIN)
265 # define SLAP_EVENT_IS_WRITE(i)         SLAP_EPOLL_EVENT_CHK((i), EPOLLOUT)
266 # define SLAP_EVENT_IS_LISTENER(i)      SLAP_EPOLL_EV_LISTENER(revents[(i)].data.ptr)
267 # define SLAP_EVENT_LISTENER(i)         ((Listener *)(revents[(i)].data.ptr))
268
269 # define SLAP_EVENT_FD(i)               SLAP_EPOLL_EV_PTRFD(revents[(i)].data.ptr)
270
271 # define SLAP_SOCK_INIT         do { \
272         slap_daemon.sd_epolls = ch_calloc(1, \
273                 ( sizeof(struct epoll_event) * 2 \
274                         + sizeof(int) ) * dtblsize * 2); \
275         slap_daemon.sd_index = (int *)&slap_daemon.sd_epolls[ 2 * dtblsize ]; \
276         slap_daemon.sd_epfd = epoll_create( dtblsize ); \
277         for ( i = 0; i < dtblsize; i++ ) slap_daemon.sd_index[i] = -1; \
278 } while (0)
279
280 # define SLAP_SOCK_DESTROY              do { \
281         if ( slap_daemon.sd_epolls != NULL ) { \
282                 ch_free( slap_daemon.sd_epolls ); \
283                 slap_daemon.sd_epolls = NULL; \
284                 slap_daemon.sd_index = NULL; \
285                 close( slap_daemon.sd_epfd ); \
286         } \
287 } while ( 0 )
288
289 # define SLAP_EVENT_DECL                struct epoll_event *revents
290
291 # define SLAP_EVENT_INIT                do { \
292         revents = slap_daemon.sd_epolls + dtblsize; \
293 } while (0)
294
295 # define SLAP_EVENT_WAIT(tvp, nsp)      do { \
296         *(nsp) = epoll_wait( slap_daemon.sd_epfd, revents, \
297                 dtblsize, (tvp) ? (tvp)->tv_sec * 1000 : -1 ); \
298 } while (0)
299
300 #elif defined(SLAP_X_DEVPOLL) && defined(HAVE_DEVPOLL)
301
302 /*************************************************************
303  * Use Solaris' (>= 2.7) /dev/poll infrastructure - poll(7d) *
304  *************************************************************/
305 # define SLAP_EVENT_FNAME               "/dev/poll"
306 # define SLAP_EVENTS_ARE_INDEXED        0
307 /*
308  * - sd_index   is used much like with epoll()
309  * - sd_l       is maintained as an array containing the address
310  *              of the listener; the index is the fd itself
311  * - sd_pollfd  is used to keep track of what data has been
312  *              registered in /dev/poll
313  */
314 # define SLAP_DEVPOLL_SOCK_IX(s)        (slap_daemon.sd_index[(s)])
315 # define SLAP_DEVPOLL_SOCK_LX(s)        (slap_daemon.sd_l[(s)])
316 # define SLAP_DEVPOLL_SOCK_EP(s)        (slap_daemon.sd_pollfd[SLAP_DEVPOLL_SOCK_IX((s))])
317 # define SLAP_DEVPOLL_SOCK_FD(s)        (SLAP_DEVPOLL_SOCK_EP((s)).fd)
318 # define SLAP_DEVPOLL_SOCK_EV(s)        (SLAP_DEVPOLL_SOCK_EP((s)).events)
319 # define SLAP_SOCK_IS_ACTIVE(s)         (SLAP_DEVPOLL_SOCK_IX((s)) != -1)
320 # define SLAP_SOCK_NOT_ACTIVE(s)        (SLAP_DEVPOLL_SOCK_IX((s)) == -1)
321 # define SLAP_SOCK_IS_SET(s, mode)      (SLAP_DEVPOLL_SOCK_EV((s)) & (mode))
322
323 # define SLAP_SOCK_IS_READ(s)           SLAP_SOCK_IS_SET((s), POLLIN)
324 # define SLAP_SOCK_IS_WRITE(s)          SLAP_SOCK_IS_SET((s), POLLOUT)
325
326 /* as far as I understand, any time we need to communicate with the kernel
327  * about the number and/or properties of a file descriptor we need it to
328  * wait for, we have to rewrite the whole set */
329 # define SLAP_DEVPOLL_WRITE_POLLFD(s, pfd, n, what, shdn)       do { \
330         int rc; \
331         size_t size = (n) * sizeof( struct pollfd ); \
332         /* FIXME: use pwrite? */ \
333         rc = write( slap_daemon.sd_dpfd, (pfd), size ); \
334         if ( rc != size ) { \
335                 Debug( LDAP_DEBUG_ANY, "daemon: " SLAP_EVENT_FNAME ": " \
336                         "%s fd=%d failed errno=%d\n", \
337                         (what), (s), errno ); \
338                 if ( (shdn) ) { \
339                         slapd_shutdown = 2; \
340                 } \
341         } \
342 } while (0)
343
344 # define SLAP_DEVPOLL_SOCK_SET(s, mode)         do { \
345         Debug( LDAP_DEBUG_CONNS, "SLAP_SOCK_SET_%s(%d)=%d\n", \
346                 (mode) == POLLIN ? "READ" : "WRITE", (s), \
347                 ( (SLAP_DEVPOLL_SOCK_EV((s)) & (mode)) != (mode) ) ); \
348         if ( (SLAP_DEVPOLL_SOCK_EV((s)) & (mode)) != (mode) ) { \
349                 struct pollfd pfd; \
350                 SLAP_DEVPOLL_SOCK_EV((s)) |= (mode); \
351                 pfd.fd = SLAP_DEVPOLL_SOCK_FD((s)); \
352                 pfd.events = /* (mode) */ SLAP_DEVPOLL_SOCK_EV((s)); \
353                 SLAP_DEVPOLL_WRITE_POLLFD((s), &pfd, 1, "SET", 0); \
354         } \
355 } while (0)
356
357 # define SLAP_DEVPOLL_SOCK_CLR(s, mode)         do { \
358         Debug( LDAP_DEBUG_CONNS, "SLAP_SOCK_CLR_%s(%d)=%d\n", \
359                 (mode) == POLLIN ? "READ" : "WRITE", (s), \
360                 ( (SLAP_DEVPOLL_SOCK_EV((s)) & (mode)) == (mode) ) ); \
361         if ((SLAP_DEVPOLL_SOCK_EV((s)) & (mode)) == (mode) ) { \
362                 struct pollfd pfd[2]; \
363                 SLAP_DEVPOLL_SOCK_EV((s)) &= ~(mode); \
364                 pfd[0].fd = SLAP_DEVPOLL_SOCK_FD((s)); \
365                 pfd[0].events = POLLREMOVE; \
366                 pfd[1] = SLAP_DEVPOLL_SOCK_EP((s)); \
367                 SLAP_DEVPOLL_WRITE_POLLFD((s), &pfd[0], 2, "CLR", 0); \
368         } \
369 } while (0)
370
371 # define SLAP_SOCK_SET_READ(s)          SLAP_DEVPOLL_SOCK_SET(s, POLLIN)
372 # define SLAP_SOCK_SET_WRITE(s)         SLAP_DEVPOLL_SOCK_SET(s, POLLOUT)
373
374 # define SLAP_SOCK_CLR_READ(s)          SLAP_DEVPOLL_SOCK_CLR((s), POLLIN)
375 # define SLAP_SOCK_CLR_WRITE(s)         SLAP_DEVPOLL_SOCK_CLR((s), POLLOUT)
376
377 #  define SLAP_SOCK_SET_SUSPEND(s) \
378         ( slap_daemon.sd_suspend[SLAP_DEVPOLL_SOCK_IX((s))] = 1 )
379 #  define SLAP_SOCK_CLR_SUSPEND(s) \
380         ( slap_daemon.sd_suspend[SLAP_DEVPOLL_SOCK_IX((s))] = 0 )
381 #  define SLAP_SOCK_IS_SUSPEND(s) \
382         ( slap_daemon.sd_suspend[SLAP_DEVPOLL_SOCK_IX((s))] == 1 )
383
384 # define SLAP_DEVPOLL_EVENT_CLR(i, mode)        (revents[(i)].events &= ~(mode))
385
386 # define SLAP_EVENT_MAX                 slap_daemon.sd_nfds
387
388 /* If a Listener address is provided, store that in the sd_l array.
389  * If we can't do this add, the system is out of resources and we 
390  * need to shutdown.
391  */
392 # define SLAP_SOCK_ADD(s, l)            do { \
393         Debug( LDAP_DEBUG_CONNS, "SLAP_SOCK_ADD(%d, %p)\n", (s), (l), 0 ); \
394         SLAP_DEVPOLL_SOCK_IX((s)) = slap_daemon.sd_nfds; \
395         SLAP_DEVPOLL_SOCK_LX((s)) = (l); \
396         SLAP_DEVPOLL_SOCK_FD((s)) = (s); \
397         SLAP_DEVPOLL_SOCK_EV((s)) = POLLIN; \
398         SLAP_DEVPOLL_WRITE_POLLFD((s), &SLAP_DEVPOLL_SOCK_EP((s)), 1, "ADD", 1); \
399         slap_daemon.sd_nfds++; \
400 } while (0)
401
402 # define SLAP_DEVPOLL_EV_LISTENER(ptr)  ((ptr) != NULL)
403
404 # define SLAP_SOCK_DEL(s)               do { \
405         int fd, index = SLAP_DEVPOLL_SOCK_IX((s)); \
406         Debug( LDAP_DEBUG_CONNS, "SLAP_SOCK_DEL(%d)\n", (s), 0, 0 ); \
407         if ( index < 0 ) break; \
408         if ( index < slap_daemon.sd_nfds - 1 ) { \
409                 struct pollfd pfd = slap_daemon.sd_pollfd[index]; \
410                 fd = slap_daemon.sd_pollfd[slap_daemon.sd_nfds - 1].fd; \
411                 slap_daemon.sd_pollfd[index] = slap_daemon.sd_pollfd[slap_daemon.sd_nfds - 1]; \
412                 slap_daemon.sd_pollfd[slap_daemon.sd_nfds - 1] = pfd; \
413                 slap_daemon.sd_index[fd] = index; \
414         } \
415         slap_daemon.sd_index[(s)] = -1; \
416         slap_daemon.sd_pollfd[slap_daemon.sd_nfds - 1].events = POLLREMOVE; \
417         SLAP_DEVPOLL_WRITE_POLLFD((s), &slap_daemon.sd_pollfd[slap_daemon.sd_nfds - 1], 1, "DEL", 0); \
418         slap_daemon.sd_pollfd[slap_daemon.sd_nfds - 1].events = 0; \
419         slap_daemon.sd_nfds--; \
420 } while (0)
421
422 # define SLAP_EVENT_CLR_READ(i)         SLAP_DEVPOLL_EVENT_CLR((i), POLLIN)
423 # define SLAP_EVENT_CLR_WRITE(i)        SLAP_DEVPOLL_EVENT_CLR((i), POLLOUT)
424
425 # define SLAP_DEVPOLL_EVENT_CHK(i, mode)        (revents[(i)].events & (mode))
426
427 # define SLAP_EVENT_FD(i)               (revents[(i)].fd)
428
429 # define SLAP_EVENT_IS_READ(i)          SLAP_DEVPOLL_EVENT_CHK((i), POLLIN)
430 # define SLAP_EVENT_IS_WRITE(i)         SLAP_DEVPOLL_EVENT_CHK((i), POLLOUT)
431 # define SLAP_EVENT_IS_LISTENER(i)      SLAP_DEVPOLL_EV_LISTENER(SLAP_DEVPOLL_SOCK_LX(SLAP_EVENT_FD((i))))
432 # define SLAP_EVENT_LISTENER(i)         SLAP_DEVPOLL_SOCK_LX(SLAP_EVENT_FD((i)))
433
434 # define SLAP_SOCK_INIT         do { \
435         slap_daemon.sd_pollfd = ch_calloc( 1, \
436                 ( sizeof(struct pollfd) * 2 \
437                         + sizeof( int ) \
438                         + sizeof( Listener * ) ) * dtblsize ); \
439         slap_daemon.sd_index = (int *)&slap_daemon.sd_pollfd[ 2 * dtblsize ]; \
440         slap_daemon.sd_l = (Listener **)&slap_daemon.sd_index[ dtblsize ]; \
441         slap_daemon.sd_dpfd = open( SLAP_EVENT_FNAME, O_RDWR ); \
442         if ( slap_daemon.sd_dpfd == -1 ) { \
443                 Debug( LDAP_DEBUG_ANY, "daemon: " SLAP_EVENT_FNAME ": " \
444                         "open(\"" SLAP_EVENT_FNAME "\") failed errno=%d\n", \
445                         errno, 0, 0 ); \
446                 SLAP_SOCK_DESTROY; \
447                 return -1; \
448         } \
449         for ( i = 0; i < dtblsize; i++ ) { \
450                 slap_daemon.sd_pollfd[i].fd = -1; \
451                 slap_daemon.sd_index[i] = -1; \
452         } \
453 } while (0)
454
455 # define SLAP_SOCK_DESTROY              do { \
456         if ( slap_daemon.sd_pollfd != NULL ) { \
457                 ch_free( slap_daemon.sd_pollfd ); \
458                 slap_daemon.sd_pollfd = NULL; \
459                 slap_daemon.sd_index = NULL; \
460                 slap_daemon.sd_l = NULL; \
461                 close( slap_daemon.sd_dpfd ); \
462         } \
463 } while ( 0 )
464
465 # define SLAP_EVENT_DECL                struct pollfd *revents
466
467 # define SLAP_EVENT_INIT                do { \
468         revents = &slap_daemon.sd_pollfd[ dtblsize ]; \
469 } while (0)
470
471 # define SLAP_EVENT_WAIT(tvp, nsp)      do { \
472         struct dvpoll           sd_dvpoll; \
473         sd_dvpoll.dp_timeout = (tvp) ? (tvp)->tv_sec * 1000 : -1; \
474         sd_dvpoll.dp_nfds = dtblsize; \
475         sd_dvpoll.dp_fds = revents; \
476         *(nsp) = ioctl( slap_daemon.sd_dpfd, DP_POLL, &sd_dvpoll ); \
477 } while (0)
478
479 #else /* ! epoll && ! /dev/poll */
480 # ifdef HAVE_WINSOCK
481 # define SLAP_EVENT_FNAME               "WSselect"
482 /* Winsock provides a "select" function but its fd_sets are
483  * actually arrays of sockets. Since these sockets are handles
484  * and not a contiguous range of small integers, we manage our
485  * own "fd" table of socket handles and use their indices as
486  * descriptors.
487  *
488  * All of our listener/connection structures use fds; the actual
489  * I/O functions use sockets. The SLAP_FD2SOCK macro in proto-slap.h
490  * handles the mapping.
491  *
492  * Despite the mapping overhead, this is about 45% more efficient
493  * than just using Winsock's select and FD_ISSET directly.
494  *
495  * Unfortunately Winsock's select implementation doesn't scale well
496  * as the number of connections increases. This probably needs to be
497  * rewritten to use the Winsock overlapped/asynchronous I/O functions.
498  */
499 # define SLAP_EVENTS_ARE_INDEXED        1
500 # define SLAP_EVENT_DECL                fd_set readfds, writefds
501 # define SLAP_EVENT_INIT        do { \
502         int i; \
503         FD_ZERO( &readfds ); \
504         FD_ZERO( &writefds ); \
505         memset( slap_daemon.sd_rflags, 0, slap_daemon.sd_nfds ); \
506         for ( i=0; i<slap_daemon.sd_nfds; i++ ) { \
507                 if ( slap_daemon.sd_flags[i] & SD_READ ) \
508                         FD_SET( slapd_ws_sockets[i], &readfds );\
509                 if ( slap_daemon.sd_flags[i] & SD_WRITE ) \
510                         FD_SET( slapd_ws_sockets[i], &writefds ); \
511         } } while ( 0 )
512
513 # define SLAP_EVENT_MAX         slap_daemon.sd_nfds
514
515 # define SLAP_EVENT_WAIT(tvp, nsp)      do { \
516         int i; \
517         *(nsp) = select( SLAP_EVENT_MAX, &readfds, \
518                 nwriters > 0 ? &writefds : NULL, NULL, (tvp) ); \
519         for ( i=0; i<readfds.fd_count; i++) { \
520                 int fd = slapd_sock2fd(readfds.fd_array[i]); \
521                 if ( fd >= 0 ) { \
522                         slap_daemon.sd_rflags[fd] = SD_READ; \
523                         if ( fd >= *(nsp)) *(nsp) = fd+1; \
524                 } \
525         } \
526         for ( i=0; i<writefds.fd_count; i++) { \
527                 int fd = slapd_sock2fd(writefds.fd_array[i]); \
528                 if ( fd >= 0 ) { \
529                         slap_daemon.sd_rflags[fd] = SD_WRITE; \
530                         if ( fd >= *(nsp)) *(nsp) = fd+1; \
531                 } \
532         } \
533 } while (0)
534
535 # define SLAP_EVENT_IS_READ(fd)         (slap_daemon.sd_rflags[fd] & SD_READ)
536 # define SLAP_EVENT_IS_WRITE(fd)        (slap_daemon.sd_rflags[fd] & SD_WRITE)
537
538 # define SLAP_EVENT_CLR_READ(fd)        slap_daemon.sd_rflags[fd] &= ~SD_READ;
539 # define SLAP_EVENT_CLR_WRITE(fd)       slap_daemon.sd_rflags[fd] &= ~SD_WRITE;
540
541 # define SLAP_SOCK_INIT         do { \
542         ldap_pvt_thread_mutex_init( &slapd_ws_mutex ); \
543         slapd_ws_sockets = ch_malloc( dtblsize * ( sizeof(SOCKET) + 2)); \
544         slap_daemon.sd_flags = (char *)(slapd_ws_sockets + dtblsize); \
545         slap_daemon.sd_rflags = slap_daemon.sd_flags + dtblsize; \
546         memset( slapd_ws_sockets, -1, dtblsize * sizeof(SOCKET) ); \
547         memset( slap_daemon.sd_flags, 0, dtblsize ); \
548         slapd_ws_sockets[0] = wake_sds[0]; \
549         slapd_ws_sockets[1] = wake_sds[1]; \
550         wake_sds[0] = 0; \
551         wake_sds[1] = 1; \
552         slap_daemon.sd_nfds = 2; \
553         } while ( 0 )
554
555 # define SLAP_SOCK_DESTROY      do { \
556         ch_free( slapd_ws_sockets ); slapd_ws_sockets = NULL; \
557         slap_daemon.sd_flags = NULL; \
558         slap_daemon.sd_rflags = NULL; \
559         ldap_pvt_thread_mutex_destroy( &slapd_ws_mutex ); \
560         } while ( 0 )
561
562 # define SLAP_SOCK_IS_ACTIVE(fd) ( slap_daemon.sd_flags[fd] & SD_ACTIVE )
563 # define SLAP_SOCK_IS_READ(fd) ( slap_daemon.sd_flags[fd] & SD_READ )
564 # define SLAP_SOCK_IS_WRITE(fd) ( slap_daemon.sd_flags[fd] & SD_WRITE )
565 # define SLAP_SOCK_NOT_ACTIVE(fd)       (!slap_daemon.sd_flags[fd])
566
567 # define SLAP_SOCK_SET_READ(fd)         ( slap_daemon.sd_flags[fd] |= SD_READ )
568 # define SLAP_SOCK_SET_WRITE(fd)                ( slap_daemon.sd_flags[fd] |= SD_WRITE )
569
570 # define SLAP_SELECT_ADDTEST(s) do { \
571         if ((s) >= slap_daemon.sd_nfds) slap_daemon.sd_nfds = (s)+1; \
572 } while (0)
573
574 # define SLAP_SOCK_CLR_READ(fd)         ( slap_daemon.sd_flags[fd] &= ~SD_READ )
575 # define SLAP_SOCK_CLR_WRITE(fd)                ( slap_daemon.sd_flags[fd] &= ~SD_WRITE )
576
577 # define SLAP_SOCK_ADD(s, l)    do { \
578         SLAP_SELECT_ADDTEST((s)); \
579         slap_daemon.sd_flags[s] = SD_ACTIVE|SD_READ; \
580 } while ( 0 )
581
582 # define SLAP_SOCK_DEL(s) do { \
583         slap_daemon.sd_flags[s] = 0; \
584         slapd_sockdel( s ); \
585 } while ( 0 )
586
587 # else /* !HAVE_WINSOCK */
588
589 /**************************************
590  * Use select system call - select(2) *
591  **************************************/
592 # define SLAP_EVENT_FNAME               "select"
593 /* select */
594 # define SLAP_EVENTS_ARE_INDEXED        1
595 # define SLAP_EVENT_DECL                fd_set readfds, writefds
596
597 # define SLAP_EVENT_INIT                do { \
598         AC_MEMCPY( &readfds, &slap_daemon.sd_readers, sizeof(fd_set) ); \
599         if ( nwriters ) { \
600                 AC_MEMCPY( &writefds, &slap_daemon.sd_writers, sizeof(fd_set) ); \
601         } else { \
602                 FD_ZERO( &writefds ); \
603         } \
604 } while (0)
605
606 # ifdef FD_SETSIZE
607 #  define SLAP_SELECT_CHK_SETSIZE       do { \
608         if (dtblsize > FD_SETSIZE) dtblsize = FD_SETSIZE; \
609 } while (0)
610 # else /* ! FD_SETSIZE */
611 #  define SLAP_SELECT_CHK_SETSIZE       do { ; } while (0)
612 # endif /* ! FD_SETSIZE */
613
614 # define SLAP_SOCK_INIT                 do { \
615         SLAP_SELECT_CHK_SETSIZE; \
616         FD_ZERO(&slap_daemon.sd_actives); \
617         FD_ZERO(&slap_daemon.sd_readers); \
618         FD_ZERO(&slap_daemon.sd_writers); \
619 } while (0)
620
621 # define SLAP_SOCK_DESTROY
622
623 # define SLAP_SOCK_IS_ACTIVE(fd)        FD_ISSET((fd), &slap_daemon.sd_actives)
624 # define SLAP_SOCK_IS_READ(fd)          FD_ISSET((fd), &slap_daemon.sd_readers)
625 # define SLAP_SOCK_IS_WRITE(fd)         FD_ISSET((fd), &slap_daemon.sd_writers)
626
627 # define SLAP_SOCK_NOT_ACTIVE(fd)       (!SLAP_SOCK_IS_ACTIVE(fd) && \
628          !SLAP_SOCK_IS_READ(fd) && !SLAP_SOCK_IS_WRITE(fd))
629
630 # define SLAP_SOCK_SET_READ(fd) FD_SET((fd), &slap_daemon.sd_readers)
631 # define SLAP_SOCK_SET_WRITE(fd)        FD_SET((fd), &slap_daemon.sd_writers)
632
633 # define SLAP_EVENT_MAX         slap_daemon.sd_nfds
634 # define SLAP_SELECT_ADDTEST(s) do { \
635         if ((s) >= slap_daemon.sd_nfds) slap_daemon.sd_nfds = (s)+1; \
636 } while (0)
637
638 # define SLAP_SOCK_CLR_READ(fd)         FD_CLR((fd), &slap_daemon.sd_readers)
639 # define SLAP_SOCK_CLR_WRITE(fd)        FD_CLR((fd), &slap_daemon.sd_writers)
640
641 # define SLAP_SOCK_ADD(s, l)            do { \
642         SLAP_SELECT_ADDTEST((s)); \
643         FD_SET((s), &slap_daemon.sd_actives); \
644         FD_SET((s), &slap_daemon.sd_readers); \
645 } while (0)
646
647 # define SLAP_SOCK_DEL(s)               do { \
648         FD_CLR((s), &slap_daemon.sd_actives); \
649         FD_CLR((s), &slap_daemon.sd_readers); \
650         FD_CLR((s), &slap_daemon.sd_writers); \
651 } while (0)
652
653 # define SLAP_EVENT_IS_READ(fd)         FD_ISSET((fd), &readfds)
654 # define SLAP_EVENT_IS_WRITE(fd)        FD_ISSET((fd), &writefds)
655
656 # define SLAP_EVENT_CLR_READ(fd)        FD_CLR((fd), &readfds)
657 # define SLAP_EVENT_CLR_WRITE(fd)       FD_CLR((fd), &writefds)
658
659 # define SLAP_EVENT_WAIT(tvp, nsp)      do { \
660         *(nsp) = select( SLAP_EVENT_MAX, &readfds, \
661                 nwriters > 0 ? &writefds : NULL, NULL, (tvp) ); \
662 } while (0)
663 # endif /* !HAVE_WINSOCK */
664 #endif /* ! epoll && ! /dev/poll */
665
666 #ifdef HAVE_SLP
667 /*
668  * SLP related functions
669  */
670 #include <slp.h>
671
672 #define LDAP_SRVTYPE_PREFIX "service:ldap://"
673 #define LDAPS_SRVTYPE_PREFIX "service:ldaps://"
674 static char** slapd_srvurls = NULL;
675 static SLPHandle slapd_hslp = 0;
676 int slapd_register_slp = 0;
677 const char *slapd_slp_attrs = NULL;
678
679 static SLPError slapd_slp_cookie;
680
681 static void
682 slapd_slp_init( const char* urls )
683 {
684         int i;
685         SLPError err;
686
687         slapd_srvurls = ldap_str2charray( urls, " " );
688
689         if ( slapd_srvurls == NULL ) return;
690
691         /* find and expand INADDR_ANY URLs */
692         for ( i = 0; slapd_srvurls[i] != NULL; i++ ) {
693                 if ( strcmp( slapd_srvurls[i], "ldap:///" ) == 0 ) {
694                         slapd_srvurls[i] = (char *) ch_realloc( slapd_srvurls[i],
695                                 global_host_bv.bv_len +
696                                 sizeof( LDAP_SRVTYPE_PREFIX ) );
697                         strcpy( lutil_strcopy(slapd_srvurls[i],
698                                 LDAP_SRVTYPE_PREFIX ), global_host_bv.bv_val );
699                 } else if ( strcmp( slapd_srvurls[i], "ldaps:///" ) == 0 ) {
700                         slapd_srvurls[i] = (char *) ch_realloc( slapd_srvurls[i],
701                                 global_host_bv.bv_len +
702                                 sizeof( LDAPS_SRVTYPE_PREFIX ) );
703                         strcpy( lutil_strcopy(slapd_srvurls[i],
704                                 LDAPS_SRVTYPE_PREFIX ), global_host_bv.bv_val );
705                 }
706         }
707
708         /* open the SLP handle */
709         err = SLPOpen( "en", 0, &slapd_hslp );
710
711         if ( err != SLP_OK ) {
712                 Debug( LDAP_DEBUG_CONNS, "daemon: SLPOpen() failed with %ld\n",
713                         (long)err, 0, 0 );
714         }
715 }
716
717 static void
718 slapd_slp_deinit( void )
719 {
720         if ( slapd_srvurls == NULL ) return;
721
722         ldap_charray_free( slapd_srvurls );
723         slapd_srvurls = NULL;
724
725         /* close the SLP handle */
726         SLPClose( slapd_hslp );
727 }
728
729 static void
730 slapd_slp_regreport(
731         SLPHandle       hslp,
732         SLPError        errcode,
733         void            *cookie )
734 {
735         /* return the error code in the cookie */
736         *(SLPError*)cookie = errcode; 
737 }
738
739 static void
740 slapd_slp_reg()
741 {
742         int i;
743         SLPError err;
744
745         if ( slapd_srvurls == NULL ) return;
746
747         for ( i = 0; slapd_srvurls[i] != NULL; i++ ) {
748                 if ( strncmp( slapd_srvurls[i], LDAP_SRVTYPE_PREFIX,
749                                 sizeof( LDAP_SRVTYPE_PREFIX ) - 1 ) == 0 ||
750                         strncmp( slapd_srvurls[i], LDAPS_SRVTYPE_PREFIX,
751                                 sizeof( LDAPS_SRVTYPE_PREFIX ) - 1 ) == 0 )
752                 {
753                         err = SLPReg( slapd_hslp,
754                                 slapd_srvurls[i],
755                                 SLP_LIFETIME_MAXIMUM,
756                                 "ldap",
757                                 (slapd_slp_attrs) ? slapd_slp_attrs : "",
758                                 SLP_TRUE,
759                                 slapd_slp_regreport,
760                                 &slapd_slp_cookie );
761
762                         if ( err != SLP_OK || slapd_slp_cookie != SLP_OK ) {
763                                 Debug( LDAP_DEBUG_CONNS,
764                                         "daemon: SLPReg(%s) failed with %ld, cookie = %ld\n",
765                                         slapd_srvurls[i], (long)err, (long)slapd_slp_cookie );
766                         }       
767                 }
768         }
769 }
770
771 static void
772 slapd_slp_dereg( void )
773 {
774         int i;
775         SLPError err;
776
777         if ( slapd_srvurls == NULL ) return;
778
779         for ( i = 0; slapd_srvurls[i] != NULL; i++ ) {
780                 err = SLPDereg( slapd_hslp,
781                         slapd_srvurls[i],
782                         slapd_slp_regreport,
783                         &slapd_slp_cookie );
784                 
785                 if ( err != SLP_OK || slapd_slp_cookie != SLP_OK ) {
786                         Debug( LDAP_DEBUG_CONNS,
787                                 "daemon: SLPDereg(%s) failed with %ld, cookie = %ld\n",
788                                 slapd_srvurls[i], (long)err, (long)slapd_slp_cookie );
789                 }
790         }
791 }
792 #endif /* HAVE_SLP */
793
794 #ifdef HAVE_WINSOCK
795 /* Manage the descriptor to socket table */
796 ber_socket_t
797 slapd_socknew( ber_socket_t s )
798 {
799         ber_socket_t i;
800         ldap_pvt_thread_mutex_lock( &slapd_ws_mutex );
801         for ( i = 0; i < dtblsize && slapd_ws_sockets[i] != INVALID_SOCKET; i++ );
802         if ( i == dtblsize ) {
803                 WSASetLastError( WSAEMFILE );
804         } else {
805                 slapd_ws_sockets[i] = s;
806         }
807         ldap_pvt_thread_mutex_unlock( &slapd_ws_mutex );
808         return i;
809 }
810
811 void
812 slapd_sockdel( ber_socket_t s )
813 {
814         ldap_pvt_thread_mutex_lock( &slapd_ws_mutex );
815         slapd_ws_sockets[s] = INVALID_SOCKET;
816         ldap_pvt_thread_mutex_unlock( &slapd_ws_mutex );
817 }
818
819 ber_socket_t
820 slapd_sock2fd( ber_socket_t s )
821 {
822         ber_socket_t i;
823         for ( i=0; i<dtblsize && slapd_ws_sockets[i] != s; i++);
824         if ( i == dtblsize )
825                 i = -1;
826         return i;
827 }
828 #endif
829
830 /*
831  * Add a descriptor to daemon control
832  *
833  * If isactive, the descriptor is a live server session and is subject
834  * to idletimeout control. Otherwise, the descriptor is a passive
835  * listener or an outbound client session, and not subject to
836  * idletimeout. The underlying event handler may record the Listener
837  * argument to differentiate Listener's from real sessions.
838  */
839 static void
840 slapd_add( ber_socket_t s, int isactive, Listener *sl )
841 {
842         ldap_pvt_thread_mutex_lock( &slap_daemon.sd_mutex );
843
844         assert( SLAP_SOCK_NOT_ACTIVE(s) );
845
846         if ( isactive ) slap_daemon.sd_nactives++;
847
848         SLAP_SOCK_ADD(s, sl);
849
850         Debug( LDAP_DEBUG_CONNS, "daemon: added %ldr%s listener=%p\n",
851                 (long) s, isactive ? " (active)" : "", (void *)sl );
852
853         ldap_pvt_thread_mutex_unlock( &slap_daemon.sd_mutex );
854
855         WAKE_LISTENER(1);
856 }
857
858 /*
859  * NOTE: unused
860  */
861 void
862 slapd_sd_lock( void )
863 {
864         ldap_pvt_thread_mutex_lock( &slap_daemon.sd_mutex );
865 }
866
867 /*
868  * NOTE: unused
869  */
870 void
871 slapd_sd_unlock( void )
872 {
873         ldap_pvt_thread_mutex_unlock( &slap_daemon.sd_mutex );
874 }
875
876 /*
877  * Remove the descriptor from daemon control
878  */
879 void
880 slapd_remove(
881         ber_socket_t s,
882         Sockbuf *sb,
883         int wasactive,
884         int wake,
885         int locked )
886 {
887         int waswriter;
888         int wasreader;
889
890         if ( !locked )
891                 ldap_pvt_thread_mutex_lock( &slap_daemon.sd_mutex );
892
893         assert( SLAP_SOCK_IS_ACTIVE( s ));
894
895         if ( wasactive ) slap_daemon.sd_nactives--;
896
897         waswriter = SLAP_SOCK_IS_WRITE(s);
898         wasreader = SLAP_SOCK_IS_READ(s);
899
900         Debug( LDAP_DEBUG_CONNS, "daemon: removing %ld%s%s\n",
901                 (long) s,
902                 wasreader ? "r" : "",
903                 waswriter ? "w" : "" );
904
905         if ( waswriter ) slap_daemon.sd_nwriters--;
906
907         SLAP_SOCK_DEL(s);
908
909         if ( sb )
910                 ber_sockbuf_free(sb);
911
912         /* If we ran out of file descriptors, we dropped a listener from
913          * the select() loop. Now that we're removing a session from our
914          * control, we can try to resume a dropped listener to use.
915          */
916         if ( emfile ) {
917                 int i;
918                 for ( i = 0; slap_listeners[i] != NULL; i++ ) {
919                         Listener *lr = slap_listeners[i];
920
921                         if ( lr->sl_sd == AC_SOCKET_INVALID ) continue;
922                         if ( lr->sl_sd == s ) continue;
923                         if ( lr->sl_mute ) {
924                                 lr->sl_mute = 0;
925                                 emfile--;
926                                 break;
927                         }
928                 }
929                 /* Walked the entire list without enabling anything; emfile
930                  * counter is stale. Reset it.
931                  */
932                 if ( slap_listeners[i] == NULL ) emfile = 0;
933         }
934         ldap_pvt_thread_mutex_unlock( &slap_daemon.sd_mutex );
935         WAKE_LISTENER(wake || slapd_gentle_shutdown == 2);
936 }
937
938 void
939 slapd_clr_write( ber_socket_t s, int wake )
940 {
941         ldap_pvt_thread_mutex_lock( &slap_daemon.sd_mutex );
942
943         if ( SLAP_SOCK_IS_WRITE( s )) {
944                 assert( SLAP_SOCK_IS_ACTIVE( s ));
945
946                 SLAP_SOCK_CLR_WRITE( s );
947                 slap_daemon.sd_nwriters--;
948         }
949
950         ldap_pvt_thread_mutex_unlock( &slap_daemon.sd_mutex );
951         WAKE_LISTENER(wake);
952 }
953
954 void
955 slapd_set_write( ber_socket_t s, int wake )
956 {
957         ldap_pvt_thread_mutex_lock( &slap_daemon.sd_mutex );
958
959         assert( SLAP_SOCK_IS_ACTIVE( s ));
960
961         if ( !SLAP_SOCK_IS_WRITE( s )) {
962                 SLAP_SOCK_SET_WRITE( s );
963                 slap_daemon.sd_nwriters++;
964         }
965         if (( wake & 2 ) && global_writetimeout && !chk_writetime ) {
966                 chk_writetime = slap_get_time();
967         }
968
969         ldap_pvt_thread_mutex_unlock( &slap_daemon.sd_mutex );
970         WAKE_LISTENER(wake);
971 }
972
973 int
974 slapd_clr_read( ber_socket_t s, int wake )
975 {
976         int rc = 1;
977         ldap_pvt_thread_mutex_lock( &slap_daemon.sd_mutex );
978
979         if ( SLAP_SOCK_IS_ACTIVE( s )) {
980                 SLAP_SOCK_CLR_READ( s );
981                 rc = 0;
982         }
983         ldap_pvt_thread_mutex_unlock( &slap_daemon.sd_mutex );
984         if ( !rc )
985                 WAKE_LISTENER(wake);
986         return rc;
987 }
988
989 void
990 slapd_set_read( ber_socket_t s, int wake )
991 {
992         ldap_pvt_thread_mutex_lock( &slap_daemon.sd_mutex );
993
994         assert( SLAP_SOCK_IS_ACTIVE( s ));
995         if (!SLAP_SOCK_IS_READ( s )) SLAP_SOCK_SET_READ( s );
996
997         ldap_pvt_thread_mutex_unlock( &slap_daemon.sd_mutex );
998         WAKE_LISTENER(wake);
999 }
1000
1001 time_t
1002 slapd_get_writetime()
1003 {
1004         time_t cur;
1005         ldap_pvt_thread_mutex_lock( &slap_daemon.sd_mutex );
1006         cur = chk_writetime;
1007         ldap_pvt_thread_mutex_unlock( &slap_daemon.sd_mutex );
1008         return cur;
1009 }
1010
1011 void
1012 slapd_clr_writetime( time_t old )
1013 {
1014         ldap_pvt_thread_mutex_lock( &slap_daemon.sd_mutex );
1015         if ( chk_writetime == old )
1016                 chk_writetime = 0;
1017         ldap_pvt_thread_mutex_unlock( &slap_daemon.sd_mutex );
1018 }
1019
1020 static void
1021 slapd_close( ber_socket_t s )
1022 {
1023         Debug( LDAP_DEBUG_CONNS, "daemon: closing %ld\n",
1024                 (long) s, 0, 0 );
1025         tcp_close( SLAP_FD2SOCK(s) );
1026 #ifdef HAVE_WINSOCK
1027         slapd_sockdel( s );
1028 #endif
1029 }
1030
1031 static void
1032 slap_free_listener_addresses( struct sockaddr **sal )
1033 {
1034         struct sockaddr **sap;
1035         if (sal == NULL) return;
1036         for (sap = sal; *sap != NULL; sap++) ch_free(*sap);
1037         ch_free(sal);
1038 }
1039
1040 #if defined(LDAP_PF_LOCAL) || defined(SLAP_X_LISTENER_MOD)
1041 static int
1042 get_url_perms(
1043         char    **exts,
1044         mode_t  *perms,
1045         int     *crit )
1046 {
1047         int     i;
1048
1049         assert( exts != NULL );
1050         assert( perms != NULL );
1051         assert( crit != NULL );
1052
1053         *crit = 0;
1054         for ( i = 0; exts[ i ]; i++ ) {
1055                 char    *type = exts[ i ];
1056                 int     c = 0;
1057
1058                 if ( type[ 0 ] == '!' ) {
1059                         c = 1;
1060                         type++;
1061                 }
1062
1063                 if ( strncasecmp( type, LDAPI_MOD_URLEXT "=",
1064                         sizeof(LDAPI_MOD_URLEXT "=") - 1 ) == 0 )
1065                 {
1066                         char *value = type + ( sizeof(LDAPI_MOD_URLEXT "=") - 1 );
1067                         mode_t p = 0;
1068                         int j;
1069
1070                         switch (strlen(value)) {
1071                         case 4:
1072                                 /* skip leading '0' */
1073                                 if ( value[ 0 ] != '0' ) return LDAP_OTHER;
1074                                 value++;
1075
1076                         case 3:
1077                                 for ( j = 0; j < 3; j++) {
1078                                         int     v;
1079
1080                                         v = value[ j ] - '0';
1081
1082                                         if ( v < 0 || v > 7 ) return LDAP_OTHER;
1083
1084                                         p |= v << 3*(2-j);
1085                                 }
1086                                 break;
1087
1088                         case 10:
1089                                 for ( j = 1; j < 10; j++ ) {
1090                                         static mode_t   m[] = { 0, 
1091                                                 S_IRUSR, S_IWUSR, S_IXUSR,
1092                                                 S_IRGRP, S_IWGRP, S_IXGRP,
1093                                                 S_IROTH, S_IWOTH, S_IXOTH
1094                                         };
1095                                         static const char       c[] = "-rwxrwxrwx"; 
1096
1097                                         if ( value[ j ] == c[ j ] ) {
1098                                                 p |= m[ j ];
1099         
1100                                         } else if ( value[ j ] != '-' ) {
1101                                                 return LDAP_OTHER;
1102                                         }
1103                                 }
1104                                 break;
1105
1106                         default:
1107                                 return LDAP_OTHER;
1108                         } 
1109
1110                         *crit = c;
1111                         *perms = p;
1112
1113                         return LDAP_SUCCESS;
1114                 }
1115         }
1116
1117         return LDAP_OTHER;
1118 }
1119 #endif /* LDAP_PF_LOCAL || SLAP_X_LISTENER_MOD */
1120
1121 /* port = 0 indicates AF_LOCAL */
1122 static int
1123 slap_get_listener_addresses(
1124         const char *host,
1125         unsigned short port,
1126         struct sockaddr ***sal )
1127 {
1128         struct sockaddr **sap;
1129
1130 #ifdef LDAP_PF_LOCAL
1131         if ( port == 0 ) {
1132                 *sal = ch_malloc(2 * sizeof(void *));
1133                 if (*sal == NULL) return -1;
1134
1135                 sap = *sal;
1136                 *sap = ch_malloc(sizeof(struct sockaddr_un));
1137                 if (*sap == NULL) goto errexit;
1138                 sap[1] = NULL;
1139
1140                 if ( strlen(host) >
1141                         (sizeof(((struct sockaddr_un *)*sap)->sun_path) - 1) )
1142                 {
1143                         Debug( LDAP_DEBUG_ANY,
1144                                 "daemon: domain socket path (%s) too long in URL",
1145                                 host, 0, 0);
1146                         goto errexit;
1147                 }
1148
1149                 (void)memset( (void *)*sap, '\0', sizeof(struct sockaddr_un) );
1150                 (*sap)->sa_family = AF_LOCAL;
1151                 strcpy( ((struct sockaddr_un *)*sap)->sun_path, host );
1152         } else
1153 #endif /* LDAP_PF_LOCAL */
1154         {
1155 #ifdef HAVE_GETADDRINFO
1156                 struct addrinfo hints, *res, *sai;
1157                 int n, err;
1158                 char serv[7];
1159
1160                 memset( &hints, '\0', sizeof(hints) );
1161                 hints.ai_flags = AI_PASSIVE;
1162                 hints.ai_socktype = SOCK_STREAM;
1163                 hints.ai_family = slap_inet4or6;
1164                 snprintf(serv, sizeof serv, "%d", port);
1165
1166                 if ( (err = getaddrinfo(host, serv, &hints, &res)) ) {
1167                         Debug( LDAP_DEBUG_ANY, "daemon: getaddrinfo() failed: %s\n",
1168                                 AC_GAI_STRERROR(err), 0, 0);
1169                         return -1;
1170                 }
1171
1172                 sai = res;
1173                 for (n=2; (sai = sai->ai_next) != NULL; n++) {
1174                         /* EMPTY */ ;
1175                 }
1176                 *sal = ch_calloc(n, sizeof(void *));
1177                 if (*sal == NULL) return -1;
1178
1179                 sap = *sal;
1180                 *sap = NULL;
1181
1182                 for ( sai=res; sai; sai=sai->ai_next ) {
1183                         if( sai->ai_addr == NULL ) {
1184                                 Debug( LDAP_DEBUG_ANY, "slap_get_listener_addresses: "
1185                                         "getaddrinfo ai_addr is NULL?\n", 0, 0, 0 );
1186                                 freeaddrinfo(res);
1187                                 goto errexit;
1188                         }
1189
1190                         switch (sai->ai_family) {
1191 #  ifdef LDAP_PF_INET6
1192                         case AF_INET6:
1193                                 *sap = ch_malloc(sizeof(struct sockaddr_in6));
1194                                 if (*sap == NULL) {
1195                                         freeaddrinfo(res);
1196                                         goto errexit;
1197                                 }
1198                                 *(struct sockaddr_in6 *)*sap =
1199                                         *((struct sockaddr_in6 *)sai->ai_addr);
1200                                 break;
1201 #  endif /* LDAP_PF_INET6 */
1202                         case AF_INET:
1203                                 *sap = ch_malloc(sizeof(struct sockaddr_in));
1204                                 if (*sap == NULL) {
1205                                         freeaddrinfo(res);
1206                                         goto errexit;
1207                                 }
1208                                 *(struct sockaddr_in *)*sap =
1209                                         *((struct sockaddr_in *)sai->ai_addr);
1210                                 break;
1211                         default:
1212                                 *sap = NULL;
1213                                 break;
1214                         }
1215
1216                         if (*sap != NULL) {
1217                                 (*sap)->sa_family = sai->ai_family;
1218                                 sap++;
1219                                 *sap = NULL;
1220                         }
1221                 }
1222
1223                 freeaddrinfo(res);
1224
1225 #else /* ! HAVE_GETADDRINFO */
1226                 int i, n = 1;
1227                 struct in_addr in;
1228                 struct hostent *he = NULL;
1229
1230                 if ( host == NULL ) {
1231                         in.s_addr = htonl(INADDR_ANY);
1232
1233                 } else if ( !inet_aton( host, &in ) ) {
1234                         he = gethostbyname( host );
1235                         if( he == NULL ) {
1236                                 Debug( LDAP_DEBUG_ANY,
1237                                         "daemon: invalid host %s", host, 0, 0);
1238                                 return -1;
1239                         }
1240                         for (n = 0; he->h_addr_list[n]; n++) /* empty */;
1241                 }
1242
1243                 *sal = ch_malloc((n+1) * sizeof(void *));
1244                 if (*sal == NULL) return -1;
1245
1246                 sap = *sal;
1247                 for ( i = 0; i<n; i++ ) {
1248                         sap[i] = ch_malloc(sizeof(struct sockaddr_in));
1249                         if (*sap == NULL) goto errexit;
1250
1251                         (void)memset( (void *)sap[i], '\0', sizeof(struct sockaddr_in) );
1252                         sap[i]->sa_family = AF_INET;
1253                         ((struct sockaddr_in *)sap[i])->sin_port = htons(port);
1254                         AC_MEMCPY( &((struct sockaddr_in *)sap[i])->sin_addr,
1255                                 he ? (struct in_addr *)he->h_addr_list[i] : &in,
1256                                 sizeof(struct in_addr) );
1257                 }
1258                 sap[i] = NULL;
1259 #endif /* ! HAVE_GETADDRINFO */
1260         }
1261
1262         return 0;
1263
1264 errexit:
1265         slap_free_listener_addresses(*sal);
1266         return -1;
1267 }
1268
1269 static int
1270 slap_open_listener(
1271         const char* url,
1272         int *listeners,
1273         int *cur )
1274 {
1275         int     num, tmp, rc;
1276         Listener l;
1277         Listener *li;
1278         LDAPURLDesc *lud;
1279         unsigned short port;
1280         int err, addrlen = 0;
1281         struct sockaddr **sal, **psal;
1282         int socktype = SOCK_STREAM;     /* default to COTS */
1283         ber_socket_t s;
1284
1285 #if defined(LDAP_PF_LOCAL) || defined(SLAP_X_LISTENER_MOD)
1286         /*
1287          * use safe defaults
1288          */
1289         int     crit = 1;
1290 #endif /* LDAP_PF_LOCAL || SLAP_X_LISTENER_MOD */
1291
1292         rc = ldap_url_parse( url, &lud );
1293
1294         if( rc != LDAP_URL_SUCCESS ) {
1295                 Debug( LDAP_DEBUG_ANY,
1296                         "daemon: listen URL \"%s\" parse error=%d\n",
1297                         url, rc, 0 );
1298                 return rc;
1299         }
1300
1301         l.sl_url.bv_val = NULL;
1302         l.sl_mute = 0;
1303         l.sl_busy = 0;
1304
1305 #ifndef HAVE_TLS
1306         if( ldap_pvt_url_scheme2tls( lud->lud_scheme ) ) {
1307                 Debug( LDAP_DEBUG_ANY, "daemon: TLS not supported (%s)\n",
1308                         url, 0, 0 );
1309                 ldap_free_urldesc( lud );
1310                 return -1;
1311         }
1312
1313         if(! lud->lud_port ) lud->lud_port = LDAP_PORT;
1314
1315 #else /* HAVE_TLS */
1316         l.sl_is_tls = ldap_pvt_url_scheme2tls( lud->lud_scheme );
1317
1318         if(! lud->lud_port ) {
1319                 lud->lud_port = l.sl_is_tls ? LDAPS_PORT : LDAP_PORT;
1320         }
1321 #endif /* HAVE_TLS */
1322
1323 #ifdef LDAP_TCP_BUFFER
1324         l.sl_tcp_rmem = 0;
1325         l.sl_tcp_wmem = 0;
1326 #endif /* LDAP_TCP_BUFFER */
1327
1328         port = (unsigned short) lud->lud_port;
1329
1330         tmp = ldap_pvt_url_scheme2proto(lud->lud_scheme);
1331         if ( tmp == LDAP_PROTO_IPC ) {
1332 #ifdef LDAP_PF_LOCAL
1333                 if ( lud->lud_host == NULL || lud->lud_host[0] == '\0' ) {
1334                         err = slap_get_listener_addresses(LDAPI_SOCK, 0, &sal);
1335                 } else {
1336                         err = slap_get_listener_addresses(lud->lud_host, 0, &sal);
1337                 }
1338 #else /* ! LDAP_PF_LOCAL */
1339
1340                 Debug( LDAP_DEBUG_ANY, "daemon: URL scheme not supported: %s",
1341                         url, 0, 0);
1342                 ldap_free_urldesc( lud );
1343                 return -1;
1344 #endif /* ! LDAP_PF_LOCAL */
1345         } else {
1346                 if( lud->lud_host == NULL || lud->lud_host[0] == '\0'
1347                         || strcmp(lud->lud_host, "*") == 0 )
1348                 {
1349                         err = slap_get_listener_addresses(NULL, port, &sal);
1350                 } else {
1351                         err = slap_get_listener_addresses(lud->lud_host, port, &sal);
1352                 }
1353         }
1354
1355 #ifdef LDAP_CONNECTIONLESS
1356         l.sl_is_udp = ( tmp == LDAP_PROTO_UDP );
1357 #endif /* LDAP_CONNECTIONLESS */
1358
1359 #if defined(LDAP_PF_LOCAL) || defined(SLAP_X_LISTENER_MOD)
1360         if ( lud->lud_exts ) {
1361                 err = get_url_perms( lud->lud_exts, &l.sl_perms, &crit );
1362         } else {
1363                 l.sl_perms = S_IRWXU | S_IRWXO;
1364         }
1365 #endif /* LDAP_PF_LOCAL || SLAP_X_LISTENER_MOD */
1366
1367         ldap_free_urldesc( lud );
1368         if ( err ) return -1;
1369
1370         /* If we got more than one address returned, we need to make space
1371          * for it in the slap_listeners array.
1372          */
1373         for ( num=0; sal[num]; num++ ) /* empty */;
1374         if ( num > 1 ) {
1375                 *listeners += num-1;
1376                 slap_listeners = ch_realloc( slap_listeners,
1377                         (*listeners + 1) * sizeof(Listener *) );
1378         }
1379
1380         psal = sal;
1381         while ( *sal != NULL ) {
1382                 char *af;
1383                 switch( (*sal)->sa_family ) {
1384                 case AF_INET:
1385                         af = "IPv4";
1386                         break;
1387 #ifdef LDAP_PF_INET6
1388                 case AF_INET6:
1389                         af = "IPv6";
1390                         break;
1391 #endif /* LDAP_PF_INET6 */
1392 #ifdef LDAP_PF_LOCAL
1393                 case AF_LOCAL:
1394                         af = "Local";
1395                         break;
1396 #endif /* LDAP_PF_LOCAL */
1397                 default:
1398                         sal++;
1399                         continue;
1400                 }
1401
1402 #ifdef LDAP_CONNECTIONLESS
1403                 if( l.sl_is_udp ) socktype = SOCK_DGRAM;
1404 #endif /* LDAP_CONNECTIONLESS */
1405
1406                 s = socket( (*sal)->sa_family, socktype, 0);
1407                 if ( s == AC_SOCKET_INVALID ) {
1408                         int err = sock_errno();
1409                         Debug( LDAP_DEBUG_ANY,
1410                                 "daemon: %s socket() failed errno=%d (%s)\n",
1411                                 af, err, sock_errstr(err) );
1412                         sal++;
1413                         continue;
1414                 }
1415                 l.sl_sd = SLAP_SOCKNEW( s );
1416
1417                 if ( l.sl_sd >= dtblsize ) {
1418                         Debug( LDAP_DEBUG_ANY,
1419                                 "daemon: listener descriptor %ld is too great %ld\n",
1420                                 (long) l.sl_sd, (long) dtblsize, 0 );
1421                         tcp_close( s );
1422                         sal++;
1423                         continue;
1424                 }
1425
1426 #ifdef LDAP_PF_LOCAL
1427                 if ( (*sal)->sa_family == AF_LOCAL ) {
1428                         unlink( ((struct sockaddr_un *)*sal)->sun_path );
1429                 } else
1430 #endif /* LDAP_PF_LOCAL */
1431                 {
1432 #ifdef SO_REUSEADDR
1433                         /* enable address reuse */
1434                         tmp = 1;
1435                         rc = setsockopt( s, SOL_SOCKET, SO_REUSEADDR,
1436                                 (char *) &tmp, sizeof(tmp) );
1437                         if ( rc == AC_SOCKET_ERROR ) {
1438                                 int err = sock_errno();
1439                                 Debug( LDAP_DEBUG_ANY, "slapd(%ld): "
1440                                         "setsockopt(SO_REUSEADDR) failed errno=%d (%s)\n",
1441                                         (long) l.sl_sd, err, sock_errstr(err) );
1442                         }
1443 #endif /* SO_REUSEADDR */
1444                 }
1445
1446                 switch( (*sal)->sa_family ) {
1447                 case AF_INET:
1448                         addrlen = sizeof(struct sockaddr_in);
1449                         break;
1450 #ifdef LDAP_PF_INET6
1451                 case AF_INET6:
1452 #ifdef IPV6_V6ONLY
1453                         /* Try to use IPv6 sockets for IPv6 only */
1454                         tmp = 1;
1455                         rc = setsockopt( s , IPPROTO_IPV6, IPV6_V6ONLY,
1456                                 (char *) &tmp, sizeof(tmp) );
1457                         if ( rc == AC_SOCKET_ERROR ) {
1458                                 int err = sock_errno();
1459                                 Debug( LDAP_DEBUG_ANY, "slapd(%ld): "
1460                                         "setsockopt(IPV6_V6ONLY) failed errno=%d (%s)\n",
1461                                         (long) l.sl_sd, err, sock_errstr(err) );
1462                         }
1463 #endif /* IPV6_V6ONLY */
1464                         addrlen = sizeof(struct sockaddr_in6);
1465                         break;
1466 #endif /* LDAP_PF_INET6 */
1467
1468 #ifdef LDAP_PF_LOCAL
1469                 case AF_LOCAL:
1470 #ifdef LOCAL_CREDS
1471                         {
1472                                 int one = 1;
1473                                 setsockopt( s, 0, LOCAL_CREDS, &one, sizeof( one ) );
1474                         }
1475 #endif /* LOCAL_CREDS */
1476
1477                         addrlen = sizeof( struct sockaddr_un );
1478                         break;
1479 #endif /* LDAP_PF_LOCAL */
1480                 }
1481
1482 #ifdef LDAP_PF_LOCAL
1483                 /* create socket with all permissions set for those systems
1484                  * that honor permissions on sockets (e.g. Linux); typically,
1485                  * only write is required.  To exploit filesystem permissions,
1486                  * place the socket in a directory and use directory's
1487                  * permissions.  Need write perms to the directory to 
1488                  * create/unlink the socket; likely need exec perms to access
1489                  * the socket (ITS#4709) */
1490                 {
1491                         mode_t old_umask = 0;
1492
1493                         if ( (*sal)->sa_family == AF_LOCAL ) {
1494                                 old_umask = umask( 0 );
1495                         }
1496 #endif /* LDAP_PF_LOCAL */
1497                         rc = bind( s, *sal, addrlen );
1498 #ifdef LDAP_PF_LOCAL
1499                         if ( old_umask != 0 ) {
1500                                 umask( old_umask );
1501                         }
1502                 }
1503 #endif /* LDAP_PF_LOCAL */
1504                 if ( rc ) {
1505                         err = sock_errno();
1506                         Debug( LDAP_DEBUG_ANY,
1507                                 "daemon: bind(%ld) failed errno=%d (%s)\n",
1508                                 (long)l.sl_sd, err, sock_errstr( err ) );
1509                         tcp_close( s );
1510                         sal++;
1511                         continue;
1512                 }
1513
1514                 switch ( (*sal)->sa_family ) {
1515 #ifdef LDAP_PF_LOCAL
1516                 case AF_LOCAL: {
1517                         char *addr = ((struct sockaddr_un *)*sal)->sun_path;
1518                         l.sl_name.bv_len = strlen(addr) + sizeof("PATH=") - 1;
1519                         l.sl_name.bv_val = ber_memalloc( l.sl_name.bv_len + 1 );
1520                         snprintf( l.sl_name.bv_val, l.sl_name.bv_len + 1, 
1521                                 "PATH=%s", addr );
1522                 } break;
1523 #endif /* LDAP_PF_LOCAL */
1524
1525                 case AF_INET: {
1526                         char *s;
1527 #if defined( HAVE_GETADDRINFO ) && defined( HAVE_INET_NTOP )
1528                         char addr[INET_ADDRSTRLEN];
1529                         inet_ntop( AF_INET, &((struct sockaddr_in *)*sal)->sin_addr,
1530                                 addr, sizeof(addr) );
1531                         s = addr;
1532 #else /* ! HAVE_GETADDRINFO || ! HAVE_INET_NTOP */
1533                         s = inet_ntoa( ((struct sockaddr_in *) *sal)->sin_addr );
1534 #endif /* ! HAVE_GETADDRINFO || ! HAVE_INET_NTOP */
1535                         port = ntohs( ((struct sockaddr_in *)*sal) ->sin_port );
1536                         l.sl_name.bv_val =
1537                                 ber_memalloc( sizeof("IP=255.255.255.255:65535") );
1538                         snprintf( l.sl_name.bv_val, sizeof("IP=255.255.255.255:65535"),
1539                                 "IP=%s:%d",
1540                                  s != NULL ? s : SLAP_STRING_UNKNOWN, port );
1541                         l.sl_name.bv_len = strlen( l.sl_name.bv_val );
1542                 } break;
1543
1544 #ifdef LDAP_PF_INET6
1545                 case AF_INET6: {
1546                         char addr[INET6_ADDRSTRLEN];
1547                         inet_ntop( AF_INET6, &((struct sockaddr_in6 *)*sal)->sin6_addr,
1548                                 addr, sizeof addr);
1549                         port = ntohs( ((struct sockaddr_in6 *)*sal)->sin6_port );
1550                         l.sl_name.bv_len = strlen(addr) + sizeof("IP=[]:65535");
1551                         l.sl_name.bv_val = ber_memalloc( l.sl_name.bv_len );
1552                         snprintf( l.sl_name.bv_val, l.sl_name.bv_len, "IP=[%s]:%d", 
1553                                 addr, port );
1554                         l.sl_name.bv_len = strlen( l.sl_name.bv_val );
1555                 } break;
1556 #endif /* LDAP_PF_INET6 */
1557
1558                 default:
1559                         Debug( LDAP_DEBUG_ANY, "daemon: unsupported address family (%d)\n",
1560                                 (int) (*sal)->sa_family, 0, 0 );
1561                         break;
1562                 }
1563
1564                 AC_MEMCPY(&l.sl_sa, *sal, addrlen);
1565                 ber_str2bv( url, 0, 1, &l.sl_url);
1566                 li = ch_malloc( sizeof( Listener ) );
1567                 *li = l;
1568                 slap_listeners[*cur] = li;
1569                 (*cur)++;
1570                 sal++;
1571         }
1572
1573         slap_free_listener_addresses(psal);
1574
1575         if ( l.sl_url.bv_val == NULL ) {
1576                 Debug( LDAP_DEBUG_TRACE,
1577                         "slap_open_listener: failed on %s\n", url, 0, 0 );
1578                 return -1;
1579         }
1580
1581         Debug( LDAP_DEBUG_TRACE, "daemon: listener initialized %s\n",
1582                 l.sl_url.bv_val, 0, 0 );
1583         return 0;
1584 }
1585
1586 static int sockinit(void);
1587 static int sockdestroy(void);
1588
1589 int
1590 slapd_daemon_init( const char *urls )
1591 {
1592         int i, j, n, rc;
1593         char **u;
1594
1595         Debug( LDAP_DEBUG_ARGS, "daemon_init: %s\n",
1596                 urls ? urls : "<null>", 0, 0 );
1597
1598         ldap_pvt_thread_mutex_init( &slap_daemon.sd_mutex );
1599 #ifdef HAVE_TCPD
1600         ldap_pvt_thread_mutex_init( &slap_daemon.sd_tcpd_mutex );
1601 #endif /* TCP Wrappers */
1602
1603         if( (rc = sockinit()) != 0 ) return rc;
1604
1605 #ifdef HAVE_SYSCONF
1606         dtblsize = sysconf( _SC_OPEN_MAX );
1607 #elif defined(HAVE_GETDTABLESIZE)
1608         dtblsize = getdtablesize();
1609 #else /* ! HAVE_SYSCONF && ! HAVE_GETDTABLESIZE */
1610         dtblsize = FD_SETSIZE;
1611 #endif /* ! HAVE_SYSCONF && ! HAVE_GETDTABLESIZE */
1612
1613         /* open a pipe (or something equivalent connected to itself).
1614          * we write a byte on this fd whenever we catch a signal. The main
1615          * loop will be select'ing on this socket, and will wake up when
1616          * this byte arrives.
1617          */
1618         if( (rc = lutil_pair( wake_sds )) < 0 ) {
1619                 Debug( LDAP_DEBUG_ANY,
1620                         "daemon: lutil_pair() failed rc=%d\n", rc, 0, 0 );
1621                 return rc;
1622         }
1623
1624         SLAP_SOCK_INIT;
1625
1626         if( urls == NULL ) urls = "ldap:///";
1627
1628         u = ldap_str2charray( urls, " " );
1629
1630         if( u == NULL || u[0] == NULL ) {
1631                 Debug( LDAP_DEBUG_ANY, "daemon_init: no urls (%s) provided.\n",
1632                         urls, 0, 0 );
1633                 if ( u )
1634                         ldap_charray_free( u );
1635                 return -1;
1636         }
1637
1638         for( i=0; u[i] != NULL; i++ ) {
1639                 Debug( LDAP_DEBUG_TRACE, "daemon_init: listen on %s\n",
1640                         u[i], 0, 0 );
1641         }
1642
1643         if( i == 0 ) {
1644                 Debug( LDAP_DEBUG_ANY, "daemon_init: no listeners to open (%s)\n",
1645                         urls, 0, 0 );
1646                 ldap_charray_free( u );
1647                 return -1;
1648         }
1649
1650         Debug( LDAP_DEBUG_TRACE, "daemon_init: %d listeners to open...\n",
1651                 i, 0, 0 );
1652         slap_listeners = ch_malloc( (i+1)*sizeof(Listener *) );
1653
1654         for(n = 0, j = 0; u[n]; n++ ) {
1655                 if ( slap_open_listener( u[n], &i, &j ) ) {
1656                         ldap_charray_free( u );
1657                         return -1;
1658                 }
1659         }
1660         slap_listeners[j] = NULL;
1661
1662         Debug( LDAP_DEBUG_TRACE, "daemon_init: %d listeners opened\n",
1663                 i, 0, 0 );
1664
1665
1666 #ifdef HAVE_SLP
1667         if( slapd_register_slp ) {
1668                 slapd_slp_init( urls );
1669                 slapd_slp_reg();
1670         }
1671 #endif /* HAVE_SLP */
1672
1673         ldap_charray_free( u );
1674
1675         return !i;
1676 }
1677
1678
1679 int
1680 slapd_daemon_destroy( void )
1681 {
1682         connections_destroy();
1683 #ifdef HAVE_WINSOCK
1684         if ( wake_sds[1] != INVALID_SOCKET &&
1685                 SLAP_FD2SOCK( wake_sds[1] ) != SLAP_FD2SOCK( wake_sds[0] ))
1686 #endif /* HAVE_WINSOCK */
1687                 tcp_close( SLAP_FD2SOCK(wake_sds[1]) );
1688 #ifdef HAVE_WINSOCK
1689         if ( wake_sds[0] != INVALID_SOCKET )
1690 #endif /* HAVE_WINSOCK */
1691                 tcp_close( SLAP_FD2SOCK(wake_sds[0]) );
1692         sockdestroy();
1693
1694 #ifdef HAVE_SLP
1695         if( slapd_register_slp ) {
1696                 slapd_slp_dereg();
1697                 slapd_slp_deinit();
1698         }
1699 #endif /* HAVE_SLP */
1700
1701 #ifdef HAVE_TCPD
1702         ldap_pvt_thread_mutex_destroy( &slap_daemon.sd_tcpd_mutex );
1703 #endif /* TCP Wrappers */
1704
1705         ldap_pvt_thread_mutex_destroy( &slap_daemon.sd_mutex );
1706         return 0;
1707 }
1708
1709
1710 static void
1711 close_listeners(
1712         int remove )
1713 {
1714         int l;
1715
1716         for ( l = 0; slap_listeners[l] != NULL; l++ ) {
1717                 Listener *lr = slap_listeners[l];
1718
1719                 if ( lr->sl_sd != AC_SOCKET_INVALID ) {
1720                         if ( remove ) slapd_remove( lr->sl_sd, NULL, 0, 0, 0 );
1721
1722 #ifdef LDAP_PF_LOCAL
1723                         if ( lr->sl_sa.sa_addr.sa_family == AF_LOCAL ) {
1724                                 unlink( lr->sl_sa.sa_un_addr.sun_path );
1725                         }
1726 #endif /* LDAP_PF_LOCAL */
1727
1728                         slapd_close( lr->sl_sd );
1729                 }
1730
1731                 if ( lr->sl_url.bv_val ) {
1732                         ber_memfree( lr->sl_url.bv_val );
1733                 }
1734
1735                 if ( lr->sl_name.bv_val ) {
1736                         ber_memfree( lr->sl_name.bv_val );
1737                 }
1738
1739                 free( lr );
1740                 slap_listeners[l] = NULL;
1741         }
1742 }
1743
1744 static int
1745 slap_listener(
1746         Listener *sl )
1747 {
1748         Sockaddr                from;
1749
1750         ber_socket_t s, sfd;
1751         ber_socklen_t len = sizeof(from);
1752         Connection *c;
1753         slap_ssf_t ssf = 0;
1754         struct berval authid = BER_BVNULL;
1755 #ifdef SLAPD_RLOOKUPS
1756         char hbuf[NI_MAXHOST];
1757 #endif /* SLAPD_RLOOKUPS */
1758
1759         char    *dnsname = NULL;
1760         char    *peeraddr = NULL;
1761 #ifdef LDAP_PF_LOCAL
1762         char peername[MAXPATHLEN + sizeof("PATH=")];
1763 #ifdef LDAP_PF_LOCAL_SENDMSG
1764         char peerbuf[8];
1765         struct berval peerbv = BER_BVNULL;
1766 #endif
1767 #elif defined(LDAP_PF_INET6)
1768         char peername[sizeof("IP=[ffff:ffff:ffff:ffff:ffff:ffff:ffff:ffff]:65535")];
1769 #else /* ! LDAP_PF_LOCAL && ! LDAP_PF_INET6 */
1770         char peername[sizeof("IP=255.255.255.255:65336")];
1771 #endif /* LDAP_PF_LOCAL */
1772         int cflag;
1773
1774         Debug( LDAP_DEBUG_TRACE,
1775                 ">>> slap_listener(%s)\n",
1776                 sl->sl_url.bv_val, 0, 0 );
1777
1778         peername[0] = '\0';
1779
1780 #ifdef LDAP_CONNECTIONLESS
1781         if ( sl->sl_is_udp ) return 1;
1782 #endif /* LDAP_CONNECTIONLESS */
1783
1784 #  ifdef LDAP_PF_LOCAL
1785         /* FIXME: apparently accept doesn't fill
1786          * the sun_path sun_path member */
1787         from.sa_un_addr.sun_path[0] = '\0';
1788 #  endif /* LDAP_PF_LOCAL */
1789
1790         s = accept( SLAP_FD2SOCK( sl->sl_sd ), (struct sockaddr *) &from, &len );
1791
1792         /* Resume the listener FD to allow concurrent-processing of
1793          * additional incoming connections.
1794          */
1795         sl->sl_busy = 0;
1796         WAKE_LISTENER(1);
1797
1798         if ( s == AC_SOCKET_INVALID ) {
1799                 int err = sock_errno();
1800
1801                 if(
1802 #ifdef EMFILE
1803                     err == EMFILE ||
1804 #endif /* EMFILE */
1805 #ifdef ENFILE
1806                     err == ENFILE ||
1807 #endif /* ENFILE */
1808                     0 )
1809                 {
1810                         ldap_pvt_thread_mutex_lock( &slap_daemon.sd_mutex );
1811                         emfile++;
1812                         /* Stop listening until an existing session closes */
1813                         sl->sl_mute = 1;
1814                         ldap_pvt_thread_mutex_unlock( &slap_daemon.sd_mutex );
1815                 }
1816
1817                 Debug( LDAP_DEBUG_ANY,
1818                         "daemon: accept(%ld) failed errno=%d (%s)\n",
1819                         (long) sl->sl_sd, err, sock_errstr(err) );
1820                 ldap_pvt_thread_yield();
1821                 return 0;
1822         }
1823         sfd = SLAP_SOCKNEW( s );
1824
1825         /* make sure descriptor number isn't too great */
1826         if ( sfd >= dtblsize ) {
1827                 Debug( LDAP_DEBUG_ANY,
1828                         "daemon: %ld beyond descriptor table size %ld\n",
1829                         (long) sfd, (long) dtblsize, 0 );
1830
1831                 tcp_close(s);
1832                 ldap_pvt_thread_yield();
1833                 return 0;
1834         }
1835
1836 #ifdef LDAP_DEBUG
1837         ldap_pvt_thread_mutex_lock( &slap_daemon.sd_mutex );
1838         /* newly accepted stream should not be in any of the FD SETS */
1839         assert( SLAP_SOCK_NOT_ACTIVE( sfd ));
1840         ldap_pvt_thread_mutex_unlock( &slap_daemon.sd_mutex );
1841 #endif /* LDAP_DEBUG */
1842
1843 #if defined( SO_KEEPALIVE ) || defined( TCP_NODELAY )
1844 #ifdef LDAP_PF_LOCAL
1845         /* for IPv4 and IPv6 sockets only */
1846         if ( from.sa_addr.sa_family != AF_LOCAL )
1847 #endif /* LDAP_PF_LOCAL */
1848         {
1849                 int rc;
1850                 int tmp;
1851 #ifdef SO_KEEPALIVE
1852                 /* enable keep alives */
1853                 tmp = 1;
1854                 rc = setsockopt( s, SOL_SOCKET, SO_KEEPALIVE,
1855                         (char *) &tmp, sizeof(tmp) );
1856                 if ( rc == AC_SOCKET_ERROR ) {
1857                         int err = sock_errno();
1858                         Debug( LDAP_DEBUG_ANY,
1859                                 "slapd(%ld): setsockopt(SO_KEEPALIVE) failed "
1860                                 "errno=%d (%s)\n", (long) sfd, err, sock_errstr(err) );
1861                 }
1862 #endif /* SO_KEEPALIVE */
1863 #ifdef TCP_NODELAY
1864                 /* enable no delay */
1865                 tmp = 1;
1866                 rc = setsockopt( s, IPPROTO_TCP, TCP_NODELAY,
1867                         (char *)&tmp, sizeof(tmp) );
1868                 if ( rc == AC_SOCKET_ERROR ) {
1869                         int err = sock_errno();
1870                         Debug( LDAP_DEBUG_ANY,
1871                                 "slapd(%ld): setsockopt(TCP_NODELAY) failed "
1872                                 "errno=%d (%s)\n", (long) sfd, err, sock_errstr(err) );
1873                 }
1874 #endif /* TCP_NODELAY */
1875         }
1876 #endif /* SO_KEEPALIVE || TCP_NODELAY */
1877
1878         Debug( LDAP_DEBUG_CONNS,
1879                 "daemon: listen=%ld, new connection on %ld\n",
1880                 (long) sl->sl_sd, (long) sfd, 0 );
1881
1882         cflag = 0;
1883         switch ( from.sa_addr.sa_family ) {
1884 #  ifdef LDAP_PF_LOCAL
1885         case AF_LOCAL:
1886                 cflag |= CONN_IS_IPC;
1887
1888                 /* FIXME: apparently accept doesn't fill
1889                  * the sun_path sun_path member */
1890                 if ( from.sa_un_addr.sun_path[0] == '\0' ) {
1891                         AC_MEMCPY( from.sa_un_addr.sun_path,
1892                                         sl->sl_sa.sa_un_addr.sun_path,
1893                                         sizeof( from.sa_un_addr.sun_path ) );
1894                 }
1895
1896                 sprintf( peername, "PATH=%s", from.sa_un_addr.sun_path );
1897                 ssf = local_ssf;
1898                 {
1899                         uid_t uid;
1900                         gid_t gid;
1901
1902 #ifdef LDAP_PF_LOCAL_SENDMSG
1903                         peerbv.bv_val = peerbuf;
1904                         peerbv.bv_len = sizeof( peerbuf );
1905 #endif
1906                         if( LUTIL_GETPEEREID( s, &uid, &gid, &peerbv ) == 0 ) {
1907                                 authid.bv_val = ch_malloc(
1908                                         STRLENOF( "gidNumber=4294967295+uidNumber=4294967295,"
1909                                         "cn=peercred,cn=external,cn=auth" ) + 1 );
1910                                 authid.bv_len = sprintf( authid.bv_val,
1911                                         "gidNumber=%d+uidNumber=%d,"
1912                                         "cn=peercred,cn=external,cn=auth",
1913                                         (int) gid, (int) uid );
1914                                 assert( authid.bv_len <=
1915                                         STRLENOF( "gidNumber=4294967295+uidNumber=4294967295,"
1916                                         "cn=peercred,cn=external,cn=auth" ) );
1917                         }
1918                 }
1919                 dnsname = "local";
1920                 break;
1921 #endif /* LDAP_PF_LOCAL */
1922
1923 #  ifdef LDAP_PF_INET6
1924         case AF_INET6:
1925         if ( IN6_IS_ADDR_V4MAPPED(&from.sa_in6_addr.sin6_addr) ) {
1926                 peeraddr = inet_ntoa( *((struct in_addr *)
1927                                         &from.sa_in6_addr.sin6_addr.s6_addr[12]) );
1928                 sprintf( peername, "IP=%s:%d",
1929                          peeraddr != NULL ? peeraddr : SLAP_STRING_UNKNOWN,
1930                          (unsigned) ntohs( from.sa_in6_addr.sin6_port ) );
1931         } else {
1932                 char addr[INET6_ADDRSTRLEN];
1933
1934                 peeraddr = (char *) inet_ntop( AF_INET6,
1935                                       &from.sa_in6_addr.sin6_addr,
1936                                       addr, sizeof addr );
1937                 sprintf( peername, "IP=[%s]:%d",
1938                          peeraddr != NULL ? peeraddr : SLAP_STRING_UNKNOWN,
1939                          (unsigned) ntohs( from.sa_in6_addr.sin6_port ) );
1940         }
1941         break;
1942 #  endif /* LDAP_PF_INET6 */
1943
1944         case AF_INET:
1945                 peeraddr = inet_ntoa( from.sa_in_addr.sin_addr );
1946                 sprintf( peername, "IP=%s:%d",
1947                         peeraddr != NULL ? peeraddr : SLAP_STRING_UNKNOWN,
1948                         (unsigned) ntohs( from.sa_in_addr.sin_port ) );
1949                 break;
1950
1951         default:
1952                 slapd_close(sfd);
1953                 return 0;
1954         }
1955
1956         if ( ( from.sa_addr.sa_family == AF_INET )
1957 #ifdef LDAP_PF_INET6
1958                 || ( from.sa_addr.sa_family == AF_INET6 )
1959 #endif /* LDAP_PF_INET6 */
1960                 )
1961         {
1962                 dnsname = NULL;
1963 #ifdef SLAPD_RLOOKUPS
1964                 if ( use_reverse_lookup ) {
1965                         char *herr;
1966                         if (ldap_pvt_get_hname( (const struct sockaddr *)&from, len, hbuf,
1967                                 sizeof(hbuf), &herr ) == 0) {
1968                                 ldap_pvt_str2lower( hbuf );
1969                                 dnsname = hbuf;
1970                         }
1971                 }
1972 #endif /* SLAPD_RLOOKUPS */
1973
1974 #ifdef HAVE_TCPD
1975                 {
1976                         int rc;
1977                         ldap_pvt_thread_mutex_lock( &slap_daemon.sd_tcpd_mutex );
1978                         rc = hosts_ctl("slapd",
1979                                 dnsname != NULL ? dnsname : SLAP_STRING_UNKNOWN,
1980                                 peeraddr != NULL ? peeraddr : SLAP_STRING_UNKNOWN,
1981                                 SLAP_STRING_UNKNOWN );
1982                         ldap_pvt_thread_mutex_unlock( &slap_daemon.sd_tcpd_mutex );
1983                         if ( !rc ) {
1984                                 /* DENY ACCESS */
1985                                 Statslog( LDAP_DEBUG_STATS,
1986                                         "fd=%ld DENIED from %s (%s)\n",
1987                                         (long) sfd,
1988                                         dnsname != NULL ? dnsname : SLAP_STRING_UNKNOWN,
1989                                         peeraddr != NULL ? peeraddr : SLAP_STRING_UNKNOWN,
1990                                         0, 0 );
1991                                 slapd_close(sfd);
1992                                 return 0;
1993                         }
1994                 }
1995 #endif /* HAVE_TCPD */
1996         }
1997
1998 #ifdef HAVE_TLS
1999         if ( sl->sl_is_tls ) cflag |= CONN_IS_TLS;
2000 #endif
2001         c = connection_init(sfd, sl,
2002                 dnsname != NULL ? dnsname : SLAP_STRING_UNKNOWN,
2003                 peername, cflag, ssf,
2004                 authid.bv_val ? &authid : NULL
2005                 LDAP_PF_LOCAL_SENDMSG_ARG(&peerbv));
2006
2007         if( authid.bv_val ) ch_free(authid.bv_val);
2008
2009         if( !c ) {
2010                 Debug( LDAP_DEBUG_ANY,
2011                         "daemon: connection_init(%ld, %s, %s) failed.\n",
2012                         (long) sfd, peername, sl->sl_name.bv_val );
2013                 slapd_close(sfd);
2014                 return 0;
2015         }
2016
2017         Statslog( LDAP_DEBUG_STATS,
2018                 "conn=%ld fd=%ld ACCEPT from %s (%s)\n",
2019                 c->c_connid, (long) sfd, peername, sl->sl_name.bv_val,
2020                 0 );
2021
2022         return 0;
2023 }
2024
2025 static void*
2026 slap_listener_thread(
2027         void* ctx,
2028         void* ptr )
2029 {
2030         int             rc;
2031         Listener        *sl = (Listener *)ptr;
2032
2033         rc = slap_listener( sl );
2034
2035         if( rc != LDAP_SUCCESS ) {
2036                 Debug( LDAP_DEBUG_ANY,
2037                         "slap_listener_thread(%s): failed err=%d",
2038                         sl->sl_url.bv_val, rc, 0 );
2039         }
2040
2041         return (void*)NULL;
2042 }
2043
2044 static int
2045 slap_listener_activate(
2046         Listener* sl )
2047 {
2048         int rc;
2049
2050         Debug( LDAP_DEBUG_TRACE, "slap_listener_activate(%d): %s\n",
2051                 sl->sl_sd, sl->sl_busy ? "busy" : "", 0 );
2052
2053         sl->sl_busy++;
2054
2055         rc = ldap_pvt_thread_pool_submit( &connection_pool,
2056                 slap_listener_thread, (void *) sl );
2057
2058         if( rc != 0 ) {
2059                 Debug( LDAP_DEBUG_ANY,
2060                         "listener_activate(%d): submit failed (%d)\n",
2061                         sl->sl_sd, rc, 0 );
2062         }
2063         return rc;
2064 }
2065
2066 static void *
2067 slapd_daemon_task(
2068         void *ptr )
2069 {
2070         int l;
2071         time_t last_idle_check = 0;
2072         int ebadf = 0;
2073
2074 #define SLAPD_IDLE_CHECK_LIMIT 4
2075
2076         if ( global_idletimeout > 0 ) {
2077                 last_idle_check = slap_get_time();
2078         }
2079
2080         slapd_add( wake_sds[0], 0, NULL );
2081
2082         for ( l = 0; slap_listeners[l] != NULL; l++ ) {
2083                 if ( slap_listeners[l]->sl_sd == AC_SOCKET_INVALID ) continue;
2084
2085 #ifdef LDAP_CONNECTIONLESS
2086                 /* Since this is connectionless, the data port is the
2087                  * listening port. The listen() and accept() calls
2088                  * are unnecessary.
2089                  */
2090                 if ( slap_listeners[l]->sl_is_udp )
2091                         continue;
2092 #endif /* LDAP_CONNECTIONLESS */
2093
2094                 /* FIXME: TCP-only! */
2095 #ifdef LDAP_TCP_BUFFER
2096                 if ( 1 ) {
2097                         int origsize, size, realsize, rc;
2098                         socklen_t optlen;
2099                         char buf[ SLAP_TEXT_BUFLEN ];
2100
2101                         size = 0;
2102                         if ( slap_listeners[l]->sl_tcp_rmem > 0 ) {
2103                                 size = slap_listeners[l]->sl_tcp_rmem;
2104                         } else if ( slapd_tcp_rmem > 0 ) {
2105                                 size = slapd_tcp_rmem;
2106                         }
2107
2108                         if ( size > 0 ) {
2109                                 optlen = sizeof( origsize );
2110                                 rc = getsockopt( SLAP_FD2SOCK( slap_listeners[l]->sl_sd ),
2111                                         SOL_SOCKET,
2112                                         SO_RCVBUF,
2113                                         (void *)&origsize,
2114                                         &optlen );
2115
2116                                 if ( rc ) {
2117                                         int err = sock_errno();
2118                                         Debug( LDAP_DEBUG_ANY,
2119                                                 "slapd_daemon_task: getsockopt(SO_RCVBUF) failed errno=%d (%s)\n",
2120                                                 err, sock_errstr(err), 0 );
2121                                 }
2122
2123                                 optlen = sizeof( size );
2124                                 rc = setsockopt( SLAP_FD2SOCK( slap_listeners[l]->sl_sd ),
2125                                         SOL_SOCKET,
2126                                         SO_RCVBUF,
2127                                         (const void *)&size,
2128                                         optlen );
2129
2130                                 if ( rc ) {
2131                                         int err = sock_errno();
2132                                         Debug( LDAP_DEBUG_ANY,
2133                                                 "slapd_daemon_task: setsockopt(SO_RCVBUF) failed errno=%d (%s)\n",
2134                                                 err, sock_errstr(err), 0 );
2135                                 }
2136
2137                                 optlen = sizeof( realsize );
2138                                 rc = getsockopt( SLAP_FD2SOCK( slap_listeners[l]->sl_sd ),
2139                                         SOL_SOCKET,
2140                                         SO_RCVBUF,
2141                                         (void *)&realsize,
2142                                         &optlen );
2143
2144                                 if ( rc ) {
2145                                         int err = sock_errno();
2146                                         Debug( LDAP_DEBUG_ANY,
2147                                                 "slapd_daemon_task: getsockopt(SO_RCVBUF) failed errno=%d (%s)\n",
2148                                                 err, sock_errstr(err), 0 );
2149                                 }
2150
2151                                 snprintf( buf, sizeof( buf ),
2152                                         "url=%s (#%d) RCVBUF original size=%d requested size=%d real size=%d", 
2153                                         slap_listeners[l]->sl_url.bv_val, l, origsize, size, realsize );
2154                                 Debug( LDAP_DEBUG_ANY,
2155                                         "slapd_daemon_task: %s\n",
2156                                         buf, 0, 0 );
2157                         }
2158
2159                         size = 0;
2160                         if ( slap_listeners[l]->sl_tcp_wmem > 0 ) {
2161                                 size = slap_listeners[l]->sl_tcp_wmem;
2162                         } else if ( slapd_tcp_wmem > 0 ) {
2163                                 size = slapd_tcp_wmem;
2164                         }
2165
2166                         if ( size > 0 ) {
2167                                 optlen = sizeof( origsize );
2168                                 rc = getsockopt( SLAP_FD2SOCK( slap_listeners[l]->sl_sd ),
2169                                         SOL_SOCKET,
2170                                         SO_SNDBUF,
2171                                         (void *)&origsize,
2172                                         &optlen );
2173
2174                                 if ( rc ) {
2175                                         int err = sock_errno();
2176                                         Debug( LDAP_DEBUG_ANY,
2177                                                 "slapd_daemon_task: getsockopt(SO_SNDBUF) failed errno=%d (%s)\n",
2178                                                 err, sock_errstr(err), 0 );
2179                                 }
2180
2181                                 optlen = sizeof( size );
2182                                 rc = setsockopt( SLAP_FD2SOCK( slap_listeners[l]->sl_sd ),
2183                                         SOL_SOCKET,
2184                                         SO_SNDBUF,
2185                                         (const void *)&size,
2186                                         optlen );
2187
2188                                 if ( rc ) {
2189                                         int err = sock_errno();
2190                                         Debug( LDAP_DEBUG_ANY,
2191                                                 "slapd_daemon_task: setsockopt(SO_SNDBUF) failed errno=%d (%s)",
2192                                                 err, sock_errstr(err), 0 );
2193                                 }
2194
2195                                 optlen = sizeof( realsize );
2196                                 rc = getsockopt( SLAP_FD2SOCK( slap_listeners[l]->sl_sd ),
2197                                         SOL_SOCKET,
2198                                         SO_SNDBUF,
2199                                         (void *)&realsize,
2200                                         &optlen );
2201
2202                                 if ( rc ) {
2203                                         int err = sock_errno();
2204                                         Debug( LDAP_DEBUG_ANY,
2205                                                 "slapd_daemon_task: getsockopt(SO_SNDBUF) failed errno=%d (%s)\n",
2206                                                 err, sock_errstr(err), 0 );
2207                                 }
2208
2209                                 snprintf( buf, sizeof( buf ),
2210                                         "url=%s (#%d) SNDBUF original size=%d requested size=%d real size=%d", 
2211                                         slap_listeners[l]->sl_url.bv_val, l, origsize, size, realsize );
2212                                 Debug( LDAP_DEBUG_ANY,
2213                                         "slapd_daemon_task: %s\n",
2214                                         buf, 0, 0 );
2215                         }
2216                 }
2217 #endif /* LDAP_TCP_BUFFER */
2218
2219                 if ( listen( SLAP_FD2SOCK( slap_listeners[l]->sl_sd ), SLAPD_LISTEN_BACKLOG ) == -1 ) {
2220                         int err = sock_errno();
2221
2222 #ifdef LDAP_PF_INET6
2223                         /* If error is EADDRINUSE, we are trying to listen to INADDR_ANY and
2224                          * we are already listening to in6addr_any, then we want to ignore
2225                          * this and continue.
2226                          */
2227                         if ( err == EADDRINUSE ) {
2228                                 int i;
2229                                 struct sockaddr_in sa = slap_listeners[l]->sl_sa.sa_in_addr;
2230                                 struct sockaddr_in6 sa6;
2231                                 
2232                                 if ( sa.sin_family == AF_INET &&
2233                                      sa.sin_addr.s_addr == htonl(INADDR_ANY) ) {
2234                                         for ( i = 0 ; i < l; i++ ) {
2235                                                 sa6 = slap_listeners[i]->sl_sa.sa_in6_addr;
2236                                                 if ( sa6.sin6_family == AF_INET6 &&
2237                                                      !memcmp( &sa6.sin6_addr, &in6addr_any,
2238                                                                 sizeof(struct in6_addr) ) )
2239                                                 {
2240                                                         break;
2241                                                 }
2242                                         }
2243
2244                                         if ( i < l ) {
2245                                                 /* We are already listening to in6addr_any */
2246                                                 Debug( LDAP_DEBUG_CONNS,
2247                                                         "daemon: Attempt to listen to 0.0.0.0 failed, "
2248                                                         "already listening on ::, assuming IPv4 included\n",
2249                                                         0, 0, 0 );
2250                                                 slapd_close( slap_listeners[l]->sl_sd );
2251                                                 slap_listeners[l]->sl_sd = AC_SOCKET_INVALID;
2252                                                 continue;
2253                                         }
2254                                 }
2255                         }
2256 #endif /* LDAP_PF_INET6 */
2257                         Debug( LDAP_DEBUG_ANY,
2258                                 "daemon: listen(%s, 5) failed errno=%d (%s)\n",
2259                                         slap_listeners[l]->sl_url.bv_val, err,
2260                                         sock_errstr(err) );
2261                         return (void*)-1;
2262                 }
2263
2264                 /* make the listening socket non-blocking */
2265                 if ( ber_pvt_socket_set_nonblock( SLAP_FD2SOCK( slap_listeners[l]->sl_sd ), 1 ) < 0 ) {
2266                         Debug( LDAP_DEBUG_ANY, "slapd_daemon_task: "
2267                                 "set nonblocking on a listening socket failed\n",
2268                                 0, 0, 0 );
2269                         slapd_shutdown = 2;
2270                         return (void*)-1;
2271                 }
2272
2273                 slapd_add( slap_listeners[l]->sl_sd, 0, slap_listeners[l] );
2274         }
2275
2276 #ifdef HAVE_NT_SERVICE_MANAGER
2277         if ( started_event != NULL ) {
2278                 ldap_pvt_thread_cond_signal( &started_event );
2279         }
2280 #endif /* HAVE_NT_SERVICE_MANAGER */
2281
2282         /* initialization complete. Here comes the loop. */
2283
2284         while ( !slapd_shutdown ) {
2285                 ber_socket_t            i;
2286                 int                     ns, nwriters;
2287                 int                     at;
2288                 ber_socket_t            nfds;
2289 #if SLAP_EVENTS_ARE_INDEXED
2290                 ber_socket_t            nrfds, nwfds;
2291 #endif /* SLAP_EVENTS_ARE_INDEXED */
2292 #define SLAPD_EBADF_LIMIT 16
2293
2294                 time_t                  now;
2295
2296                 SLAP_EVENT_DECL;
2297
2298                 struct timeval          tv;
2299                 struct timeval          *tvp;
2300
2301                 struct timeval          cat;
2302                 time_t                  tdelta = 1;
2303                 struct re_s*            rtask;
2304
2305                 now = slap_get_time();
2306
2307                 if ( global_idletimeout > 0 || chk_writetime ) {
2308                         int check = 0;
2309                         /* Set the select timeout.
2310                          * Don't just truncate, preserve the fractions of
2311                          * seconds to prevent sleeping for zero time.
2312                          */
2313                         if ( chk_writetime ) {
2314                                 tv.tv_sec = global_writetimeout;
2315                                 tv.tv_usec = 0;
2316                                 if ( difftime( chk_writetime, now ) < 0 )
2317                                         check = 2;
2318                         } else {
2319                                 tv.tv_sec = global_idletimeout / SLAPD_IDLE_CHECK_LIMIT;
2320                                 tv.tv_usec = global_idletimeout - \
2321                                         ( tv.tv_sec * SLAPD_IDLE_CHECK_LIMIT );
2322                                 tv.tv_usec *= 1000000 / SLAPD_IDLE_CHECK_LIMIT;
2323                                 if ( difftime( last_idle_check +
2324                                         global_idletimeout/SLAPD_IDLE_CHECK_LIMIT, now ) < 0 )
2325                                         check = 1;
2326                         }
2327                         if ( check ) {
2328                                 connections_timeout_idle( now );
2329                                 last_idle_check = now;
2330                         }
2331                 } else {
2332                         tv.tv_sec = 0;
2333                         tv.tv_usec = 0;
2334                 }
2335
2336 #ifdef SIGHUP
2337                 if ( slapd_gentle_shutdown ) {
2338                         ber_socket_t active;
2339
2340                         if ( slapd_gentle_shutdown == 1 ) {
2341                                 BackendDB *be;
2342                                 Debug( LDAP_DEBUG_ANY, "slapd gentle shutdown\n", 0, 0, 0 );
2343                                 close_listeners( 1 );
2344                                 frontendDB->be_restrictops |= SLAP_RESTRICT_OP_WRITES;
2345                                 LDAP_STAILQ_FOREACH(be, &backendDB, be_next) {
2346                                         be->be_restrictops |= SLAP_RESTRICT_OP_WRITES;
2347                                 }
2348                                 slapd_gentle_shutdown = 2;
2349                         }
2350
2351                         ldap_pvt_thread_mutex_lock( &slap_daemon.sd_mutex );
2352                         active = slap_daemon.sd_nactives;
2353                         ldap_pvt_thread_mutex_unlock( &slap_daemon.sd_mutex );
2354                         if ( active == 0 ) {
2355                                 slapd_shutdown = 1;
2356                                 break;
2357                         }
2358                 }
2359 #endif /* SIGHUP */
2360                 at = 0;
2361
2362                 ldap_pvt_thread_mutex_lock( &slap_daemon.sd_mutex );
2363
2364                 nwriters = slap_daemon.sd_nwriters;
2365
2366                 for ( l = 0; slap_listeners[l] != NULL; l++ ) {
2367                         Listener *lr = slap_listeners[l];
2368
2369                         if ( lr->sl_sd == AC_SOCKET_INVALID ) continue;
2370
2371                         if ( lr->sl_mute || lr->sl_busy )
2372                         {
2373                                 SLAP_SOCK_CLR_READ( lr->sl_sd );
2374                         } else {
2375                                 SLAP_SOCK_SET_READ( lr->sl_sd );
2376                         }
2377                 }
2378
2379                 SLAP_EVENT_INIT;
2380
2381                 nfds = SLAP_EVENT_MAX;
2382
2383                 if (( chk_writetime || global_idletimeout ) && slap_daemon.sd_nactives ) at = 1;
2384
2385                 ldap_pvt_thread_mutex_unlock( &slap_daemon.sd_mutex );
2386
2387                 if ( at 
2388 #if defined(HAVE_YIELDING_SELECT) || defined(NO_THREADS)
2389                         &&  ( tv.tv_sec || tv.tv_usec )
2390 #endif /* HAVE_YIELDING_SELECT || NO_THREADS */
2391                         )
2392                 {
2393                         tvp = &tv;
2394                 } else {
2395                         tvp = NULL;
2396                 }
2397
2398                 ldap_pvt_thread_mutex_lock( &slapd_rq.rq_mutex );
2399                 rtask = ldap_pvt_runqueue_next_sched( &slapd_rq, &cat );
2400                 while ( rtask && cat.tv_sec && cat.tv_sec <= now ) {
2401                         if ( ldap_pvt_runqueue_isrunning( &slapd_rq, rtask )) {
2402                                 ldap_pvt_runqueue_resched( &slapd_rq, rtask, 0 );
2403                         } else {
2404                                 ldap_pvt_runqueue_runtask( &slapd_rq, rtask );
2405                                 ldap_pvt_runqueue_resched( &slapd_rq, rtask, 0 );
2406                                 ldap_pvt_thread_mutex_unlock( &slapd_rq.rq_mutex );
2407                                 ldap_pvt_thread_pool_submit( &connection_pool,
2408                                         rtask->routine, (void *) rtask );
2409                                 ldap_pvt_thread_mutex_lock( &slapd_rq.rq_mutex );
2410                         }
2411                         rtask = ldap_pvt_runqueue_next_sched( &slapd_rq, &cat );
2412                 }
2413                 ldap_pvt_thread_mutex_unlock( &slapd_rq.rq_mutex );
2414
2415                 if ( rtask && cat.tv_sec ) {
2416                         /* NOTE: diff __should__ always be >= 0,
2417                          * AFAI understand; however (ITS#4872),
2418                          * time_t might be unsigned in some systems,
2419                          * while difftime() returns a double */
2420                         double diff = difftime( cat.tv_sec, now );
2421                         if ( diff <= 0 ) {
2422                                 diff = tdelta;
2423                         }
2424                         if ( tvp == NULL || diff < tv.tv_sec ) {
2425                                 tv.tv_sec = diff;
2426                                 tv.tv_usec = 0;
2427                                 tvp = &tv;
2428                         }
2429                 }
2430
2431                 for ( l = 0; slap_listeners[l] != NULL; l++ ) {
2432                         Listener *lr = slap_listeners[l];
2433
2434                         if ( lr->sl_sd == AC_SOCKET_INVALID ) {
2435                                 continue;
2436                         }
2437
2438                         if ( lr->sl_mute ) {
2439                                 Debug( LDAP_DEBUG_CONNS,
2440                                         "daemon: " SLAP_EVENT_FNAME ": "
2441                                         "listen=%d muted\n",
2442                                         lr->sl_sd, 0, 0 );
2443                                 continue;
2444                         }
2445
2446                         if ( lr->sl_busy ) {
2447                                 Debug( LDAP_DEBUG_CONNS,
2448                                         "daemon: " SLAP_EVENT_FNAME ": "
2449                                         "listen=%d busy\n",
2450                                         lr->sl_sd, 0, 0 );
2451                                 continue;
2452                         }
2453
2454                         Debug( LDAP_DEBUG_CONNS,
2455                                 "daemon: " SLAP_EVENT_FNAME ": "
2456                                 "listen=%d active_threads=%d tvp=%s\n",
2457                                 lr->sl_sd, at, tvp == NULL ? "NULL" : "zero" );
2458                 }
2459
2460                 SLAP_EVENT_WAIT( tvp, &ns );
2461                 switch ( ns ) {
2462                 case -1: {      /* failure - try again */
2463                                 int err = sock_errno();
2464
2465                                 if ( err != EINTR ) {
2466                                         ebadf++;
2467
2468                                         /* Don't log unless we got it twice in a row */
2469                                         if ( !( ebadf & 1 ) ) {
2470                                                 Debug( LDAP_DEBUG_ANY,
2471                                                         "daemon: "
2472                                                         SLAP_EVENT_FNAME
2473                                                         " failed count %d "
2474                                                         "err (%d): %s\n",
2475                                                         ebadf, err,
2476                                                         sock_errstr( err ) );
2477                                         }
2478                                         if ( ebadf >= SLAPD_EBADF_LIMIT ) {
2479                                                 slapd_shutdown = 2;
2480                                         }
2481                                 }
2482                         }
2483                         continue;
2484
2485                 case 0:         /* timeout - let threads run */
2486                         ebadf = 0;
2487 #ifndef HAVE_YIELDING_SELECT
2488                         Debug( LDAP_DEBUG_CONNS, "daemon: " SLAP_EVENT_FNAME
2489                                 "timeout - yielding\n",
2490                                 0, 0, 0 );
2491
2492                         ldap_pvt_thread_yield();
2493 #endif /* ! HAVE_YIELDING_SELECT */
2494                         continue;
2495
2496                 default:        /* something happened - deal with it */
2497                         if ( slapd_shutdown ) continue;
2498
2499                         ebadf = 0;
2500                         Debug( LDAP_DEBUG_CONNS,
2501                                 "daemon: activity on %d descriptor%s\n",
2502                                 ns, ns != 1 ? "s" : "", 0 );
2503                         /* FALL THRU */
2504                 }
2505
2506 #if SLAP_EVENTS_ARE_INDEXED
2507                 if ( SLAP_EVENT_IS_READ( wake_sds[0] ) ) {
2508                         char c[BUFSIZ];
2509                         SLAP_EVENT_CLR_READ( wake_sds[0] );
2510                         waking = 0;
2511                         tcp_read( SLAP_FD2SOCK(wake_sds[0]), c, sizeof(c) );
2512                         Debug( LDAP_DEBUG_CONNS, "daemon: waked\n", 0, 0, 0 );
2513                         continue;
2514                 }
2515
2516                 /* The event slot equals the descriptor number - this is
2517                  * true for Unix select and poll. We treat Windows select
2518                  * like this too, even though it's a kludge.
2519                  */
2520                 for ( l = 0; slap_listeners[l] != NULL; l++ ) {
2521                         int rc;
2522
2523                         if ( ns <= 0 ) break;
2524                         if ( slap_listeners[l]->sl_sd == AC_SOCKET_INVALID ) continue;
2525 #ifdef LDAP_CONNECTIONLESS
2526                         if ( slap_listeners[l]->sl_is_udp ) continue;
2527 #endif /* LDAP_CONNECTIONLESS */
2528                         if ( !SLAP_EVENT_IS_READ( slap_listeners[l]->sl_sd ) ) continue;
2529                         
2530                         /* clear events */
2531                         SLAP_EVENT_CLR_READ( slap_listeners[l]->sl_sd );
2532                         SLAP_EVENT_CLR_WRITE( slap_listeners[l]->sl_sd );
2533                         ns--;
2534
2535                         rc = slap_listener_activate( slap_listeners[l] );
2536                 }
2537
2538                 /* bypass the following tests if no descriptors left */
2539                 if ( ns <= 0 ) {
2540 #ifndef HAVE_YIELDING_SELECT
2541                         ldap_pvt_thread_yield();
2542 #endif /* HAVE_YIELDING_SELECT */
2543                         continue;
2544                 }
2545
2546                 Debug( LDAP_DEBUG_CONNS, "daemon: activity on:", 0, 0, 0 );
2547                 nrfds = 0;
2548                 nwfds = 0;
2549                 for ( i = 0; i < nfds; i++ ) {
2550                         int     r, w;
2551
2552                         r = SLAP_EVENT_IS_READ( i );
2553                         /* writefds was not initialized if nwriters was zero */
2554                         w = nwriters ? SLAP_EVENT_IS_WRITE( i ) : 0;
2555                         if ( r || w ) {
2556                                 Debug( LDAP_DEBUG_CONNS, " %d%s%s", i,
2557                                     r ? "r" : "", w ? "w" : "" );
2558                                 if ( r ) {
2559                                         nrfds++;
2560                                         ns--;
2561                                 }
2562                                 if ( w ) {
2563                                         nwfds++;
2564                                         ns--;
2565                                 }
2566                         }
2567                         if ( ns <= 0 ) break;
2568                 }
2569                 Debug( LDAP_DEBUG_CONNS, "\n", 0, 0, 0 );
2570
2571                 /* loop through the writers */
2572                 for ( i = 0; nwfds > 0; i++ ) {
2573                         ber_socket_t wd;
2574                         if ( ! SLAP_EVENT_IS_WRITE( i ) ) continue;
2575                         wd = i;
2576
2577                         SLAP_EVENT_CLR_WRITE( wd );
2578                         nwfds--;
2579
2580                         Debug( LDAP_DEBUG_CONNS,
2581                                 "daemon: write active on %d\n",
2582                                 wd, 0, 0 );
2583
2584                         /*
2585                          * NOTE: it is possible that the connection was closed
2586                          * and that the stream is now inactive.
2587                          * connection_write() must validate the stream is still
2588                          * active.
2589                          *
2590                          * ITS#4338: if the stream is invalid, there is no need to
2591                          * close it here. It has already been closed in connection.c.
2592                          */
2593                         if ( connection_write( wd ) < 0 ) {
2594                                 if ( SLAP_EVENT_IS_READ( wd ) ) {
2595                                         SLAP_EVENT_CLR_READ( (unsigned) wd );
2596                                         nrfds--;
2597                                 }
2598                         }
2599                 }
2600
2601                 for ( i = 0; nrfds > 0; i++ ) {
2602                         ber_socket_t rd;
2603                         if ( ! SLAP_EVENT_IS_READ( i ) ) continue;
2604                         rd = i;
2605                         SLAP_EVENT_CLR_READ( rd );
2606                         nrfds--;
2607
2608                         Debug ( LDAP_DEBUG_CONNS,
2609                                 "daemon: read activity on %d\n", rd, 0, 0 );
2610                         /*
2611                          * NOTE: it is possible that the connection was closed
2612                          * and that the stream is now inactive.
2613                          * connection_read() must valid the stream is still
2614                          * active.
2615                          */
2616
2617                         connection_read_activate( rd );
2618                 }
2619 #else   /* !SLAP_EVENTS_ARE_INDEXED */
2620         /* FIXME */
2621         /* The events are returned in an arbitrary list. This is true
2622          * for /dev/poll, epoll and kqueue. In order to prioritize things
2623          * so that we can handle wake_sds first, listeners second, and then
2624          * all other connections last (as we do for select), we would need
2625          * to use multiple event handles and cascade them.
2626          *
2627          * That seems like a bit of hassle. So the wake_sds check has been
2628          * skipped. For epoll and kqueue we can associate arbitrary data with
2629          * an event, so we could use pointers to the listener structure
2630          * instead of just the file descriptor. For /dev/poll we have to
2631          * search the listeners array for a matching descriptor.
2632          *
2633          * We now handle wake events when we see them; they are not given
2634          * higher priority.
2635          */
2636 #ifdef LDAP_DEBUG
2637                 Debug( LDAP_DEBUG_CONNS, "daemon: activity on:", 0, 0, 0 );
2638
2639                 for ( i = 0; i < ns; i++ ) {
2640                         int     r, w, fd;
2641
2642                         /* Don't log listener events */
2643                         if ( SLAP_EVENT_IS_LISTENER( i )
2644 #ifdef LDAP_CONNECTIONLESS
2645                                 && !( (SLAP_EVENT_LISTENER( i ))->sl_is_udp )
2646 #endif /* LDAP_CONNECTIONLESS */
2647                                 )
2648                         {
2649                                 continue;
2650                         }
2651
2652                         fd = SLAP_EVENT_FD( i );
2653                         /* Don't log internal wake events */
2654                         if ( fd == wake_sds[0] ) continue;
2655
2656                         r = SLAP_EVENT_IS_READ( i );
2657                         w = SLAP_EVENT_IS_WRITE( i );
2658                         if ( r || w ) {
2659                                 Debug( LDAP_DEBUG_CONNS, " %d%s%s", fd,
2660                                     r ? "r" : "", w ? "w" : "" );
2661                         }
2662                 }
2663                 Debug( LDAP_DEBUG_CONNS, "\n", 0, 0, 0 );
2664 #endif /* LDAP_DEBUG */
2665
2666                 for ( i = 0; i < ns; i++ ) {
2667                         int rc = 1, fd, w = 0, r = 0;
2668
2669                         if ( SLAP_EVENT_IS_LISTENER( i ) ) {
2670                                 rc = slap_listener_activate( SLAP_EVENT_LISTENER( i ) );
2671                         }
2672
2673                         /* If we found a regular listener, rc is now zero, and we
2674                          * can skip the data portion. But if it was a UDP listener
2675                          * then rc is still 1, and we want to handle the data.
2676                          */
2677                         if ( rc ) {
2678                                 fd = SLAP_EVENT_FD( i );
2679
2680                                 /* Handle wake events */
2681                                 if ( fd == wake_sds[0] ) {
2682                                         char c[BUFSIZ];
2683                                         waking = 0;
2684                                         tcp_read( SLAP_FD2SOCK(wake_sds[0]), c, sizeof(c) );
2685                                         continue;
2686                                 }
2687
2688                                 if ( SLAP_EVENT_IS_WRITE( i ) ) {
2689                                         Debug( LDAP_DEBUG_CONNS,
2690                                                 "daemon: write active on %d\n",
2691                                                 fd, 0, 0 );
2692
2693                                         SLAP_EVENT_CLR_WRITE( i );
2694                                         w = 1;
2695
2696                                         /*
2697                                          * NOTE: it is possible that the connection was closed
2698                                          * and that the stream is now inactive.
2699                                          * connection_write() must valid the stream is still
2700                                          * active.
2701                                          */
2702                                         if ( connection_write( fd ) < 0 ) {
2703                                                 continue;
2704                                         }
2705                                 }
2706                                 /* If event is a read */
2707                                 if ( SLAP_EVENT_IS_READ( i ))
2708                                         r = 1;
2709                                 if ( r || !w ) {
2710                                         Debug( LDAP_DEBUG_CONNS,
2711                                                 "daemon: read active on %d\n",
2712                                                 fd, 0, 0 );
2713
2714                                         if ( r ) {
2715                                                 SLAP_EVENT_CLR_READ( i );
2716                                         } else {
2717 #ifdef HAVE_EPOLL
2718                                                 /* Don't keep reporting the hangup
2719                                                  */
2720                                                 if ( SLAP_SOCK_IS_ACTIVE( fd )) {
2721                                                         SLAP_EPOLL_SOCK_SET( fd, EPOLLET );
2722                                                 }
2723 #endif
2724                                         }
2725                                         connection_read_activate( fd );
2726                                 }
2727                         }
2728                 }
2729 #endif  /* SLAP_EVENTS_ARE_INDEXED */
2730
2731 #ifndef HAVE_YIELDING_SELECT
2732                 ldap_pvt_thread_yield();
2733 #endif /* ! HAVE_YIELDING_SELECT */
2734         }
2735
2736         if ( slapd_shutdown == 1 ) {
2737                 Debug( LDAP_DEBUG_ANY,
2738                         "daemon: shutdown requested and initiated.\n",
2739                         0, 0, 0 );
2740
2741         } else if ( slapd_shutdown == 2 ) {
2742 #ifdef HAVE_NT_SERVICE_MANAGER
2743                         Debug( LDAP_DEBUG_ANY,
2744                                "daemon: shutdown initiated by Service Manager.\n",
2745                                0, 0, 0);
2746 #else /* !HAVE_NT_SERVICE_MANAGER */
2747                         Debug( LDAP_DEBUG_ANY,
2748                                "daemon: abnormal condition, shutdown initiated.\n",
2749                                0, 0, 0 );
2750 #endif /* !HAVE_NT_SERVICE_MANAGER */
2751         } else {
2752                 Debug( LDAP_DEBUG_ANY,
2753                        "daemon: no active streams, shutdown initiated.\n",
2754                        0, 0, 0 );
2755         }
2756
2757         if ( slapd_gentle_shutdown != 2 ) close_listeners ( 0 );
2758
2759         if ( !slapd_gentle_shutdown ) {
2760                 slapd_abrupt_shutdown = 1;
2761                 connections_shutdown();
2762         }
2763
2764         if ( LogTest( LDAP_DEBUG_ANY )) {
2765                 int t = ldap_pvt_thread_pool_backload( &connection_pool );
2766                 Debug( LDAP_DEBUG_ANY,
2767                         "slapd shutdown: waiting for %d operations/tasks to finish\n",
2768                         t, 0, 0 );
2769         }
2770         ldap_pvt_thread_pool_destroy( &connection_pool, 1 );
2771
2772         free( slap_listeners );
2773         slap_listeners = NULL;
2774
2775         return NULL;
2776 }
2777
2778
2779 #ifdef LDAP_CONNECTIONLESS
2780 static int
2781 connectionless_init( void )
2782 {
2783         int l;
2784
2785         for ( l = 0; slap_listeners[l] != NULL; l++ ) {
2786                 Listener *lr = slap_listeners[l];
2787                 Connection *c;
2788
2789                 if ( !lr->sl_is_udp ) {
2790                         continue;
2791                 }
2792
2793                 c = connection_init( lr->sl_sd, lr, "", "",
2794                         CONN_IS_UDP, (slap_ssf_t) 0, NULL
2795                         LDAP_PF_LOCAL_SENDMSG_ARG(NULL));
2796
2797                 if ( !c ) {
2798                         Debug( LDAP_DEBUG_TRACE,
2799                                 "connectionless_init: failed on %s (%d)\n",
2800                                 lr->sl_url, lr->sl_sd, 0 );
2801                         return -1;
2802                 }
2803                 lr->sl_is_udp++;
2804         }
2805
2806         return 0;
2807 }
2808 #endif /* LDAP_CONNECTIONLESS */
2809
2810 int
2811 slapd_daemon( void )
2812 {
2813         int rc;
2814
2815 #ifdef LDAP_CONNECTIONLESS
2816         connectionless_init();
2817 #endif /* LDAP_CONNECTIONLESS */
2818
2819 #define SLAPD_LISTENER_THREAD 1
2820 #if defined( SLAPD_LISTENER_THREAD )
2821         {
2822                 ldap_pvt_thread_t       listener_tid;
2823
2824                 /* listener as a separate THREAD */
2825                 rc = ldap_pvt_thread_create( &listener_tid,
2826                         0, slapd_daemon_task, NULL );
2827
2828                 if ( rc != 0 ) {
2829                         Debug( LDAP_DEBUG_ANY,
2830                         "listener ldap_pvt_thread_create failed (%d)\n", rc, 0, 0 );
2831                         return rc;
2832                 }
2833  
2834                 /* wait for the listener thread to complete */
2835                 ldap_pvt_thread_join( listener_tid, (void *)NULL );
2836         }
2837 #else /* ! SLAPD_LISTENER_THREAD */
2838         /* experimental code */
2839         slapd_daemon_task( NULL );
2840 #endif /* ! SLAPD_LISTENER_THREAD */
2841
2842         return 0;
2843 }
2844
2845 static int
2846 sockinit( void )
2847 {
2848 #if defined( HAVE_WINSOCK2 )
2849         WORD wVersionRequested;
2850         WSADATA wsaData;
2851         int err;
2852
2853         wVersionRequested = MAKEWORD( 2, 0 );
2854
2855         err = WSAStartup( wVersionRequested, &wsaData );
2856         if ( err != 0 ) {
2857                 /* Tell the user that we couldn't find a usable */
2858                 /* WinSock DLL.                                  */
2859                 return -1;
2860         }
2861
2862         /* Confirm that the WinSock DLL supports 2.0.*/
2863         /* Note that if the DLL supports versions greater    */
2864         /* than 2.0 in addition to 2.0, it will still return */
2865         /* 2.0 in wVersion since that is the version we      */
2866         /* requested.                                        */
2867
2868         if ( LOBYTE( wsaData.wVersion ) != 2 ||
2869                 HIBYTE( wsaData.wVersion ) != 0 )
2870         {
2871             /* Tell the user that we couldn't find a usable */
2872             /* WinSock DLL.                                  */
2873             WSACleanup();
2874             return -1;
2875         }
2876
2877         /* The WinSock DLL is acceptable. Proceed. */
2878 #elif defined( HAVE_WINSOCK )
2879         WSADATA wsaData;
2880         if ( WSAStartup( 0x0101, &wsaData ) != 0 ) return -1;
2881 #endif /* ! HAVE_WINSOCK2 && ! HAVE_WINSOCK */
2882
2883         return 0;
2884 }
2885
2886 static int
2887 sockdestroy( void )
2888 {
2889 #if defined( HAVE_WINSOCK2 ) || defined( HAVE_WINSOCK )
2890         WSACleanup();
2891 #endif /* HAVE_WINSOCK2 || HAVE_WINSOCK */
2892         SLAP_SOCK_DESTROY;
2893
2894         return 0;
2895 }
2896
2897 RETSIGTYPE
2898 slap_sig_shutdown( int sig )
2899 {
2900         int save_errno = errno;
2901
2902 #if 0
2903         Debug(LDAP_DEBUG_TRACE, "slap_sig_shutdown: signal %d\n", sig, 0, 0);
2904 #endif
2905
2906         /*
2907          * If the NT Service Manager is controlling the server, we don't
2908          * want SIGBREAK to kill the server. For some strange reason,
2909          * SIGBREAK is generated when a user logs out.
2910          */
2911
2912 #if defined(HAVE_NT_SERVICE_MANAGER) && defined(SIGBREAK)
2913         if (is_NT_Service && sig == SIGBREAK) {
2914                 /* empty */;
2915         } else
2916 #endif /* HAVE_NT_SERVICE_MANAGER && SIGBREAK */
2917 #ifdef SIGHUP
2918         if (sig == SIGHUP && global_gentlehup && slapd_gentle_shutdown == 0) {
2919                 slapd_gentle_shutdown = 1;
2920         } else
2921 #endif /* SIGHUP */
2922         {
2923                 slapd_shutdown = 1;
2924         }
2925
2926         WAKE_LISTENER(1);
2927
2928         /* reinstall self */
2929         (void) SIGNAL_REINSTALL( sig, slap_sig_shutdown );
2930
2931         errno = save_errno;
2932 }
2933
2934 RETSIGTYPE
2935 slap_sig_wake( int sig )
2936 {
2937         int save_errno = errno;
2938
2939         WAKE_LISTENER(1);
2940
2941         /* reinstall self */
2942         (void) SIGNAL_REINSTALL( sig, slap_sig_wake );
2943
2944         errno = save_errno;
2945 }
2946
2947
2948 void
2949 slapd_add_internal( ber_socket_t s, int isactive )
2950 {
2951         slapd_add( s, isactive, NULL );
2952 }
2953
2954 Listener **
2955 slapd_get_listeners( void )
2956 {
2957         return slap_listeners;
2958 }
2959
2960 void
2961 slap_wake_listener()
2962 {
2963         WAKE_LISTENER(1);
2964 }