fix restart option (noticed by Stanford K. Baldwin)
[Samba.git] / source / nmbd / asyncdns.c
blob5ae2eb202da2bbb19ce4e794fc4c1fa25852247f
1 /*
2 Unix SMB/Netbios implementation.
3 a async DNS handler
4 Copyright (C) Andrew Tridgell 1997-1998
6 This program is free software; you can redistribute it and/or modify
7 it under the terms of the GNU General Public License as published by
8 the Free Software Foundation; either version 2 of the License, or
9 (at your option) any later version.
11 This program is distributed in the hope that it will be useful,
12 but WITHOUT ANY WARRANTY; without even the implied warranty of
13 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 GNU General Public License for more details.
16 You should have received a copy of the GNU General Public License
17 along with this program; if not, write to the Free Software
18 Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
21 #include "includes.h"
23 /***************************************************************************
24 Add a DNS result to the name cache.
25 ****************************************************************************/
27 static struct name_record *add_dns_result(struct nmb_name *question, struct in_addr addr)
29 int name_type = question->name_type;
30 char *qname = question->name;
33 if (!addr.s_addr) {
34 /* add the fail to WINS cache of names. give it 1 hour in the cache */
35 DEBUG(3,("add_dns_result: Negative DNS answer for %s\n", qname));
36 (void)add_name_to_subnet( wins_server_subnet, qname, name_type,
37 NB_ACTIVE, 60*60, DNSFAIL_NAME, 1, &addr );
38 return( NULL );
41 /* add it to our WINS cache of names. give it 2 hours in the cache */
42 DEBUG(3,("add_dns_result: DNS gave answer for %s of %s\n", qname, inet_ntoa(addr)));
44 return( add_name_to_subnet( wins_server_subnet, qname, name_type,
45 NB_ACTIVE, 2*60*60, DNS_NAME, 1, &addr ) );
50 #ifndef SYNC_DNS
52 static int fd_in = -1, fd_out = -1;
53 static pid_t child_pid = -1;
54 static int in_dns;
56 /* this is the structure that is passed between the parent and child */
57 struct query_record {
58 struct nmb_name name;
59 struct in_addr result;
62 /* a queue of pending requests waiting to be sent to the DNS child */
63 static struct packet_struct *dns_queue;
65 /* the packet currently being processed by the dns child */
66 static struct packet_struct *dns_current;
69 /***************************************************************************
70 return the fd used to gather async dns replies. This is added to the select
71 loop
72 ****************************************************************************/
73 int asyncdns_fd(void)
75 return fd_in;
78 /***************************************************************************
79 handle DNS queries arriving from the parent
80 ****************************************************************************/
81 static void asyncdns_process(void)
83 struct query_record r;
84 fstring qname;
86 DEBUGLEVEL = -1;
88 while (1) {
89 if (read_data(fd_in, (char *)&r, sizeof(r)) != sizeof(r))
90 break;
92 fstrcpy(qname, r.name.name);
94 r.result.s_addr = interpret_addr(qname);
96 if (write_data(fd_out, (char *)&r, sizeof(r)) != sizeof(r))
97 break;
100 _exit(0);
103 /**************************************************************************** **
104 catch a sigterm (in the child process - the parent has a different handler
105 see nmbd.c for details).
106 We need a separate term handler here so we don't release any
107 names that our parent is going to release, or overwrite a
108 WINS db that our parent is going to write.
109 **************************************************************************** */
111 static void sig_term(int sig)
113 _exit(0);
116 /***************************************************************************
117 Called by the parent process when it receives a SIGTERM - also kills the
118 child so we don't get child async dns processes lying around, causing trouble.
119 ****************************************************************************/
121 void kill_async_dns_child(void)
123 if(child_pid != 0 && child_pid != -1)
124 kill(child_pid, SIGTERM);
127 /***************************************************************************
128 create a child process to handle DNS lookups
129 ****************************************************************************/
130 void start_async_dns(void)
132 int fd1[2], fd2[2];
134 CatchChild();
136 if (pipe(fd1) || pipe(fd2)) {
137 DEBUG(0,("can't create asyncdns pipes\n"));
138 return;
141 child_pid = sys_fork();
143 if (child_pid) {
144 fd_in = fd1[0];
145 fd_out = fd2[1];
146 close(fd1[1]);
147 close(fd2[0]);
148 DEBUG(0,("started asyncdns process %d\n", (int)child_pid));
149 return;
152 fd_in = fd2[0];
153 fd_out = fd1[1];
155 CatchSignal(SIGUSR2, SIG_IGN);
156 CatchSignal(SIGUSR1, SIG_IGN);
157 CatchSignal(SIGHUP, SIG_IGN);
158 CatchSignal(SIGTERM, SIGNAL_CAST sig_term );
160 asyncdns_process();
164 /***************************************************************************
165 check if a particular name is already being queried
166 ****************************************************************************/
167 static BOOL query_current(struct query_record *r)
169 return dns_current &&
170 nmb_name_equal(&r->name,
171 &dns_current->packet.nmb.question.question_name);
175 /***************************************************************************
176 write a query to the child process
177 ****************************************************************************/
178 static BOOL write_child(struct packet_struct *p)
180 struct query_record r;
182 r.name = p->packet.nmb.question.question_name;
184 return write_data(fd_out, (char *)&r, sizeof(r)) == sizeof(r);
187 /***************************************************************************
188 check the DNS queue
189 ****************************************************************************/
190 void run_dns_queue(void)
192 struct query_record r;
193 struct packet_struct *p, *p2;
194 struct name_record *namerec;
195 int size;
197 if (fd_in == -1)
198 return;
200 /* Allow SIGTERM to kill us. */
201 BlockSignals(False, SIGTERM);
203 if (!process_exists(child_pid)) {
204 close(fd_in);
205 start_async_dns();
208 if ((size=read_data(fd_in, (char *)&r, sizeof(r))) != sizeof(r)) {
209 if (size) {
210 DEBUG(0,("Incomplete DNS answer from child!\n"));
211 fd_in = -1;
213 BlockSignals(True, SIGTERM);
214 return;
217 BlockSignals(True, SIGTERM);
219 namerec = add_dns_result(&r.name, r.result);
221 if (dns_current) {
222 if (query_current(&r)) {
223 DEBUG(3,("DNS calling send_wins_name_query_response\n"));
224 in_dns = 1;
225 if(namerec == NULL)
226 send_wins_name_query_response(NAM_ERR, dns_current, NULL);
227 else
228 send_wins_name_query_response(0,dns_current,namerec);
229 in_dns = 0;
232 dns_current->locked = False;
233 free_packet(dns_current);
234 dns_current = NULL;
237 /* loop over the whole dns queue looking for entries that
238 match the result we just got */
239 for (p = dns_queue; p;) {
240 struct nmb_packet *nmb = &p->packet.nmb;
241 struct nmb_name *question = &nmb->question.question_name;
243 if (nmb_name_equal(question, &r.name)) {
244 DEBUG(3,("DNS calling send_wins_name_query_response\n"));
245 in_dns = 1;
246 if(namerec == NULL)
247 send_wins_name_query_response(NAM_ERR, p, NULL);
248 else
249 send_wins_name_query_response(0,p,namerec);
250 in_dns = 0;
251 p->locked = False;
253 if (p->prev)
254 p->prev->next = p->next;
255 else
256 dns_queue = p->next;
257 if (p->next)
258 p->next->prev = p->prev;
259 p2 = p->next;
260 free_packet(p);
261 p = p2;
262 } else {
263 p = p->next;
267 if (dns_queue) {
268 dns_current = dns_queue;
269 dns_queue = dns_queue->next;
270 if (dns_queue) dns_queue->prev = NULL;
271 dns_current->next = NULL;
273 if (!write_child(dns_current)) {
274 DEBUG(3,("failed to send DNS query to child!\n"));
275 return;
281 /***************************************************************************
282 queue a DNS query
283 ****************************************************************************/
284 BOOL queue_dns_query(struct packet_struct *p,struct nmb_name *question,
285 struct name_record **n)
287 if (in_dns || fd_in == -1)
288 return False;
290 if (!dns_current) {
291 if (!write_child(p)) {
292 DEBUG(3,("failed to send DNS query to child!\n"));
293 return False;
295 dns_current = p;
296 p->locked = True;
297 } else {
298 p->locked = True;
299 p->next = dns_queue;
300 p->prev = NULL;
301 if (p->next)
302 p->next->prev = p;
303 dns_queue = p;
306 DEBUG(3,("added DNS query for %s\n", nmb_namestr(question)));
307 return True;
310 #else
313 /***************************************************************************
314 we use this when we can't do async DNS lookups
315 ****************************************************************************/
316 BOOL queue_dns_query(struct packet_struct *p,struct nmb_name *question,
317 struct name_record **n)
319 char *qname = question->name;
320 struct in_addr dns_ip;
322 DEBUG(3,("DNS search for %s - ", nmb_namestr(question)));
324 /* Unblock TERM signal so we can be killed in DNS lookup. */
325 BlockSignals(False, SIGTERM);
327 dns_ip.s_addr = interpret_addr(qname);
329 /* Re-block TERM signal. */
330 BlockSignals(True, SIGTERM);
332 *n = add_dns_result(question, dns_ip);
333 if(*n == NULL)
334 send_wins_name_query_response(NAM_ERR, p, NULL);
335 else
336 send_wins_name_query_response(0, p, *n);
337 return False;
340 /***************************************************************************
341 With sync dns there is no child to kill on SIGTERM.
342 ****************************************************************************/
343 void kill_async_dns_child(void)
345 return;
347 #endif