source: vendor/3.6.23/source3/lib/serverid.c

Last change on this file was 860, checked in by Silvan Scherrer, 11 years ago

Samba 3.6: updated vendor to latest version

File size: 8.6 KB
Line 
1/*
2 Unix SMB/CIFS implementation.
3 Implementation of a reliable server_exists()
4 Copyright (C) Volker Lendecke 2010
5
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 3 of the License, or
9 (at your option) any later version.
10
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.
15
16 You should have received a copy of the GNU General Public License
17 along with this program. If not, see <http://www.gnu.org/licenses/>.
18*/
19
20#include "includes.h"
21#include "system/filesys.h"
22#include "serverid.h"
23#include "util_tdb.h"
24#include "dbwrap.h"
25#include "lib/util/tdb_wrap.h"
26
27struct serverid_key {
28 pid_t pid;
29 uint32_t vnn;
30};
31
32struct serverid_data {
33 uint64_t unique_id;
34 uint32_t msg_flags;
35};
36
37static struct db_context *db_ptr = NULL;
38
39static struct db_context *serverid_init(TALLOC_CTX *mem_ctx,
40 bool readonly)
41{
42 db_ptr = db_open(mem_ctx, lock_path("serverid.tdb"),
43 0, TDB_DEFAULT|TDB_CLEAR_IF_FIRST|TDB_INCOMPATIBLE_HASH,
44 readonly ? O_RDONLY : O_RDWR | O_CREAT,
45 0644);
46 return db_ptr;
47}
48
49bool serverid_parent_init(TALLOC_CTX *mem_ctx)
50{
51 /*
52 * Open the tdb in the parent process (smbd) so that our
53 * CLEAR_IF_FIRST optimization in tdb_reopen_all can properly
54 * work.
55 */
56
57 if (serverid_init(mem_ctx, false) == NULL) {
58 DEBUG(1, ("could not open serverid.tdb: %s\n",
59 strerror(errno)));
60 return false;
61 }
62
63 return true;
64}
65
66bool serverid_init_readonly(TALLOC_CTX *mem_ctx)
67{
68 if (serverid_init(mem_ctx, true) == NULL) {
69 DEBUG(1, ("could not open serverid.tdb: %s\n",
70 strerror(errno)));
71 return false;
72 }
73
74 return true;
75}
76
77static struct db_context *serverid_db(void)
78{
79 if (db_ptr != NULL) {
80 return db_ptr;
81 }
82
83 return serverid_init(NULL, false);
84}
85
86static void serverid_fill_key(const struct server_id *id,
87 struct serverid_key *key)
88{
89 ZERO_STRUCTP(key);
90 key->pid = id->pid;
91 key->vnn = id->vnn;
92}
93
94bool serverid_register(const struct server_id id, uint32_t msg_flags)
95{
96 struct db_context *db;
97 struct serverid_key key;
98 struct serverid_data data;
99 struct db_record *rec;
100 TDB_DATA tdbkey, tdbdata;
101 NTSTATUS status;
102 bool ret = false;
103
104 db = serverid_db();
105 if (db == NULL) {
106 return false;
107 }
108
109 serverid_fill_key(&id, &key);
110 tdbkey = make_tdb_data((uint8_t *)&key, sizeof(key));
111
112 rec = db->fetch_locked(db, talloc_tos(), tdbkey);
113 if (rec == NULL) {
114 DEBUG(1, ("Could not fetch_lock serverid.tdb record\n"));
115 return false;
116 }
117
118 ZERO_STRUCT(data);
119 data.unique_id = id.unique_id;
120 data.msg_flags = msg_flags;
121
122 tdbdata = make_tdb_data((uint8_t *)&data, sizeof(data));
123 status = rec->store(rec, tdbdata, 0);
124 if (!NT_STATUS_IS_OK(status)) {
125 DEBUG(1, ("Storing serverid.tdb record failed: %s\n",
126 nt_errstr(status)));
127 goto done;
128 }
129 ret = true;
130done:
131 TALLOC_FREE(rec);
132 return ret;
133}
134
135bool serverid_register_msg_flags(const struct server_id id, bool do_reg,
136 uint32_t msg_flags)
137{
138 struct db_context *db;
139 struct serverid_key key;
140 struct serverid_data *data;
141 struct db_record *rec;
142 TDB_DATA tdbkey;
143 NTSTATUS status;
144 bool ret = false;
145
146 db = serverid_db();
147 if (db == NULL) {
148 return false;
149 }
150
151 serverid_fill_key(&id, &key);
152 tdbkey = make_tdb_data((uint8_t *)&key, sizeof(key));
153
154 rec = db->fetch_locked(db, talloc_tos(), tdbkey);
155 if (rec == NULL) {
156 DEBUG(1, ("Could not fetch_lock serverid.tdb record\n"));
157 return false;
158 }
159
160 if (rec->value.dsize != sizeof(struct serverid_data)) {
161 DEBUG(1, ("serverid record has unexpected size %d "
162 "(wanted %d)\n", (int)rec->value.dsize,
163 (int)sizeof(struct serverid_data)));
164 goto done;
165 }
166
167 data = (struct serverid_data *)rec->value.dptr;
168
169 if (do_reg) {
170 data->msg_flags |= msg_flags;
171 } else {
172 data->msg_flags &= ~msg_flags;
173 }
174
175 status = rec->store(rec, rec->value, 0);
176 if (!NT_STATUS_IS_OK(status)) {
177 DEBUG(1, ("Storing serverid.tdb record failed: %s\n",
178 nt_errstr(status)));
179 goto done;
180 }
181 ret = true;
182done:
183 TALLOC_FREE(rec);
184 return ret;
185}
186
187bool serverid_deregister(struct server_id id)
188{
189 struct db_context *db;
190 struct serverid_key key;
191 struct db_record *rec;
192 TDB_DATA tdbkey;
193 NTSTATUS status;
194 bool ret = false;
195
196 db = serverid_db();
197 if (db == NULL) {
198 return false;
199 }
200
201 serverid_fill_key(&id, &key);
202 tdbkey = make_tdb_data((uint8_t *)&key, sizeof(key));
203
204 rec = db->fetch_locked(db, talloc_tos(), tdbkey);
205 if (rec == NULL) {
206 DEBUG(1, ("Could not fetch_lock serverid.tdb record\n"));
207 return false;
208 }
209
210 status = rec->delete_rec(rec);
211 if (!NT_STATUS_IS_OK(status)) {
212 DEBUG(1, ("Deleting serverid.tdb record failed: %s\n",
213 nt_errstr(status)));
214 goto done;
215 }
216 ret = true;
217done:
218 TALLOC_FREE(rec);
219 return ret;
220}
221
222struct serverid_exists_state {
223 const struct server_id *id;
224 bool exists;
225};
226
227static int server_exists_parse(TDB_DATA key, TDB_DATA data, void *priv)
228{
229 struct serverid_exists_state *state =
230 (struct serverid_exists_state *)priv;
231
232 if (data.dsize != sizeof(struct serverid_data)) {
233 return -1;
234 }
235
236 /*
237 * Use memcmp, not direct compare. data.dptr might not be
238 * aligned.
239 */
240 state->exists = (memcmp(&state->id->unique_id, data.dptr,
241 sizeof(state->id->unique_id)) == 0);
242 return 0;
243}
244
245bool serverid_exists(const struct server_id *id)
246{
247 struct db_context *db;
248 struct serverid_exists_state state;
249 struct serverid_key key;
250 TDB_DATA tdbkey;
251
252 if (procid_is_me(id)) {
253 return true;
254 }
255
256 if (!process_exists(*id)) {
257 return false;
258 }
259
260 if (id->unique_id == SERVERID_UNIQUE_ID_NOT_TO_VERIFY) {
261 return true;
262 }
263
264 db = serverid_db();
265 if (db == NULL) {
266 return false;
267 }
268
269 serverid_fill_key(id, &key);
270 tdbkey = make_tdb_data((uint8_t *)&key, sizeof(key));
271
272 state.id = id;
273 state.exists = false;
274
275 if (db->parse_record(db, tdbkey, server_exists_parse, &state) == -1) {
276 return false;
277 }
278 return state.exists;
279}
280
281static bool serverid_rec_parse(const struct db_record *rec,
282 struct server_id *id, uint32_t *msg_flags)
283{
284 struct serverid_key key;
285 struct serverid_data data;
286
287 if (rec->key.dsize != sizeof(key)) {
288 DEBUG(1, ("Found invalid key length %d in serverid.tdb\n",
289 (int)rec->key.dsize));
290 return false;
291 }
292 if (rec->value.dsize != sizeof(data)) {
293 DEBUG(1, ("Found invalid value length %d in serverid.tdb\n",
294 (int)rec->value.dsize));
295 return false;
296 }
297
298 memcpy(&key, rec->key.dptr, sizeof(key));
299 memcpy(&data, rec->value.dptr, sizeof(data));
300
301 id->pid = key.pid;
302 id->vnn = key.vnn;
303 id->unique_id = data.unique_id;
304 *msg_flags = data.msg_flags;
305 return true;
306}
307
308struct serverid_traverse_read_state {
309 int (*fn)(const struct server_id *id, uint32_t msg_flags,
310 void *private_data);
311 void *private_data;
312};
313
314static int serverid_traverse_read_fn(struct db_record *rec, void *private_data)
315{
316 struct serverid_traverse_read_state *state =
317 (struct serverid_traverse_read_state *)private_data;
318 struct server_id id;
319 uint32_t msg_flags;
320
321 if (!serverid_rec_parse(rec, &id, &msg_flags)) {
322 return 0;
323 }
324 return state->fn(&id, msg_flags,state->private_data);
325}
326
327bool serverid_traverse_read(int (*fn)(const struct server_id *id,
328 uint32_t msg_flags, void *private_data),
329 void *private_data)
330{
331 struct db_context *db;
332 struct serverid_traverse_read_state state;
333
334 db = serverid_db();
335 if (db == NULL) {
336 return false;
337 }
338 state.fn = fn;
339 state.private_data = private_data;
340 return db->traverse_read(db, serverid_traverse_read_fn, &state);
341}
342
343struct serverid_traverse_state {
344 int (*fn)(struct db_record *rec, const struct server_id *id,
345 uint32_t msg_flags, void *private_data);
346 void *private_data;
347};
348
349static int serverid_traverse_fn(struct db_record *rec, void *private_data)
350{
351 struct serverid_traverse_state *state =
352 (struct serverid_traverse_state *)private_data;
353 struct server_id id;
354 uint32_t msg_flags;
355
356 if (!serverid_rec_parse(rec, &id, &msg_flags)) {
357 return 0;
358 }
359 return state->fn(rec, &id, msg_flags, state->private_data);
360}
361
362bool serverid_traverse(int (*fn)(struct db_record *rec,
363 const struct server_id *id,
364 uint32_t msg_flags, void *private_data),
365 void *private_data)
366{
367 struct db_context *db;
368 struct serverid_traverse_state state;
369
370 db = serverid_db();
371 if (db == NULL) {
372 return false;
373 }
374 state.fn = fn;
375 state.private_data = private_data;
376 return db->traverse(db, serverid_traverse_fn, &state);
377}
378
379uint64_t serverid_get_random_unique_id(void)
380{
381 uint64_t unique_id = SERVERID_UNIQUE_ID_NOT_TO_VERIFY;
382
383 while (unique_id == SERVERID_UNIQUE_ID_NOT_TO_VERIFY) {
384 generate_random_buffer((uint8_t *)&unique_id,
385 sizeof(unique_id));
386 }
387
388 return unique_id;
389}
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