r5185: make all the events data structures private to events.c. This will
[obnox/samba/samba-obnox.git] / source4 / nbt_server / register.c
1 /* 
2    Unix SMB/CIFS implementation.
3
4    register our names
5
6    Copyright (C) Andrew Tridgell        2005
7    
8    This program is free software; you can redistribute it and/or modify
9    it under the terms of the GNU General Public License as published by
10    the Free Software Foundation; either version 2 of the License, or
11    (at your option) any later version.
12    
13    This program is distributed in the hope that it will be useful,
14    but WITHOUT ANY WARRANTY; without even the implied warranty of
15    MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
16    GNU General Public License for more details.
17    
18    You should have received a copy of the GNU General Public License
19    along with this program; if not, write to the Free Software
20    Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
21 */
22
23 #include "includes.h"
24 #include "events.h"
25 #include "dlinklist.h"
26 #include "nbt_server/nbt_server.h"
27 #include "smbd/service_task.h"
28 #include "libcli/raw/libcliraw.h"
29 #include "libcli/composite/composite.h"
30
31
32 static void nbt_start_refresh_timer(struct nbt_iface_name *iname);
33
34 /*
35   a name refresh request has completed
36 */
37 static void refresh_completion_handler(struct nbt_name_request *req)
38 {
39         struct nbt_iface_name *iname = talloc_get_type(req->async.private, struct nbt_iface_name);
40         NTSTATUS status;
41         struct nbt_name_refresh io;
42         TALLOC_CTX *tmp_ctx = talloc_new(iname);
43
44         status = nbt_name_refresh_recv(req, tmp_ctx, &io);
45         if (NT_STATUS_EQUAL(status, NT_STATUS_IO_TIMEOUT)) {
46                 DEBUG(4,("Refreshed name %s<%02x> on %s\n", 
47                          iname->name.name, iname->name.type, iname->iface->ip_address));
48                 iname->registration_time = timeval_current();
49                 nbt_start_refresh_timer(iname);
50                 talloc_free(tmp_ctx);
51                 return;
52         }
53
54         iname->nb_flags |= NBT_NM_CONFLICT;
55         iname->nb_flags &= ~NBT_NM_ACTIVE;
56
57         if (NT_STATUS_IS_OK(status)) {
58                 DEBUG(1,("Name conflict from %s refreshing name %s<%02x> on %s - rcode %d\n", 
59                          io.out.reply_addr, iname->name.name, iname->name.type, 
60                          iname->iface->ip_address, io.out.rcode));
61         } else {
62                 DEBUG(1,("Error refreshing name %s<%02x> on %s - %s\n", 
63                          iname->name.name, iname->name.type, iname->iface->ip_address,
64                          nt_errstr(status)));
65         }
66
67         talloc_free(tmp_ctx);
68 }
69
70
71 /*
72   handle name refresh timer events
73 */
74 static void name_refresh_handler(struct event_context *ev, struct timed_event *te, 
75                                  struct timeval t, void *private)
76 {
77         struct nbt_iface_name *iname = talloc_get_type(private, struct nbt_iface_name);
78         struct nbt_interface *iface = iname->iface;
79         struct nbt_name_refresh io;
80         struct nbt_name_request *req;
81
82         /* setup a name refresh request */
83         io.in.name            = iname->name;
84         io.in.dest_addr       = iface->bcast_address;
85         io.in.address         = iface->ip_address;
86         io.in.nb_flags        = iname->nb_flags;
87         io.in.ttl             = iname->ttl;
88         io.in.broadcast       = True;
89         io.in.timeout         = 3;
90
91         req = nbt_name_refresh_send(iface->nbtsock, &io);
92         if (req == NULL) return;
93
94         req->async.fn = refresh_completion_handler;
95         req->async.private = iname;
96 }
97
98
99 /*
100   start a timer to refresh this name
101 */
102 static void nbt_start_refresh_timer(struct nbt_iface_name *iname)
103 {
104         uint32_t refresh_time;
105         uint32_t max_refresh_time = lp_parm_int(-1, "nbtd", "max_refresh_time", 7200);
106
107         refresh_time = MIN(max_refresh_time, iname->ttl/2);
108         
109         event_add_timed(iname->iface->nbtsrv->task->event_ctx, 
110                         iname, 
111                         timeval_current_ofs(refresh_time, 0),
112                         name_refresh_handler, iname);
113 }
114
115
116 /*
117   a name registration has completed
118 */
119 static void nbt_register_handler(struct composite_context *req)
120 {
121         struct nbt_iface_name *iname = talloc_get_type(req->async.private, struct nbt_iface_name);
122         NTSTATUS status;
123
124         status = nbt_name_register_bcast_recv(req);
125         if (NT_STATUS_IS_OK(status)) {
126                 /* good - nobody complained about our registration */
127                 iname->nb_flags |= NBT_NM_ACTIVE;
128                 DEBUG(3,("Registered %s<%02x> on interface %s\n",
129                          iname->name.name, iname->name.type, iname->iface->bcast_address));
130                 iname->registration_time = timeval_current();
131                 nbt_start_refresh_timer(iname);
132                 return;
133         }
134
135         /* someone must have replied with an objection! */
136         iname->nb_flags |= NBT_NM_CONFLICT;
137
138         DEBUG(1,("Error registering %s<%02x> on interface %s - %s\n",
139                  iname->name.name, iname->name.type, iname->iface->bcast_address,
140                  nt_errstr(status)));
141 }
142
143
144 /*
145   register a name on a network interface
146 */
147 static void nbt_register_name_iface(struct nbt_interface *iface,
148                                     const char *name, enum nbt_name_type type,
149                                     uint16_t nb_flags)
150 {
151         struct nbt_iface_name *iname;
152         const char *scope = lp_netbios_scope();
153         struct nbt_name_register_bcast io;
154         struct composite_context *req;
155
156         iname = talloc(iface, struct nbt_iface_name);
157         if (!iname) return;
158
159         iname->iface     = iface;
160         iname->name.name = talloc_strdup(iname, name);
161         iname->name.type = type;
162         if (scope && *scope) {
163                 iname->name.scope = talloc_strdup(iname, scope);
164         } else {
165                 iname->name.scope = NULL;
166         }
167         iname->nb_flags          = nb_flags;
168         iname->ttl               = lp_parm_int(-1, "nbtd", "bcast_ttl", 300000);
169         iname->registration_time = timeval_zero();
170
171         DLIST_ADD_END(iface->names, iname, struct nbt_iface_name *);
172
173         if (nb_flags & NBT_NM_PERMANENT) {
174                 /* permanent names are not announced and are immediately active */
175                 iname->nb_flags |= NBT_NM_ACTIVE;
176                 iname->ttl       = 0;
177                 return;
178         }
179
180         /* setup a broadcast name registration request */
181         io.in.name            = iname->name;
182         io.in.dest_addr       = iface->bcast_address;
183         io.in.address         = iface->ip_address;
184         io.in.nb_flags        = nb_flags;
185         io.in.ttl             = iname->ttl;
186
187         req = nbt_name_register_bcast_send(iface->nbtsock, &io);
188         if (req == NULL) return;
189
190         req->async.fn = nbt_register_handler;
191         req->async.private = iname;
192 }
193
194
195 /*
196   register one name on all our interfaces
197 */
198 static void nbt_register_name(struct nbt_server *nbtsrv, 
199                               const char *name, enum nbt_name_type type,
200                               uint16_t nb_flags)
201 {
202         struct nbt_interface *iface;
203         
204         /* register with all the local interfaces */
205         for (iface=nbtsrv->interfaces;iface;iface=iface->next) {
206                 nbt_register_name_iface(iface, name, type, nb_flags);
207         }
208
209         /* register on our general broadcast interface as a permanent name */
210         if (nbtsrv->bcast_interface) {
211                 nbt_register_name_iface(nbtsrv->bcast_interface, name, type, 
212                                         nb_flags | NBT_NM_PERMANENT);
213         }
214
215         /* TODO: register with our WINS servers */
216 }
217
218
219 /*
220   register our names on all interfaces
221 */
222 void nbt_register_names(struct nbt_server *nbtsrv)
223 {
224         uint16_t nb_flags = NBT_NODE_M;
225
226         /* note that we don't initially mark the names "ACTIVE". They are 
227            marked active once registration is successful */
228         nbt_register_name(nbtsrv, lp_netbios_name(), NBT_NAME_CLIENT, nb_flags);
229         nbt_register_name(nbtsrv, lp_netbios_name(), NBT_NAME_USER,   nb_flags);
230         nbt_register_name(nbtsrv, lp_netbios_name(), NBT_NAME_SERVER, nb_flags);
231
232         nb_flags |= NBT_NM_GROUP;
233         nbt_register_name(nbtsrv, lp_workgroup(),    NBT_NAME_CLIENT, nb_flags);
234
235         nb_flags |= NBT_NM_PERMANENT;
236         nbt_register_name(nbtsrv, "__SAMBA__",       NBT_NAME_CLIENT, nb_flags);
237         nbt_register_name(nbtsrv, "__SAMBA__",       NBT_NAME_SERVER, nb_flags);
238         nbt_register_name(nbtsrv, "*",               NBT_NAME_CLIENT, nb_flags);
239 }