uwrap: Add mutex in uwrap_destructor().
[Samba.git] / ctdb / common / ctdb_util.c
blobc4ac583b99f7f8bf4c8bb5d622836d1169090a91
1 /*
2 ctdb utility code
4 Copyright (C) Andrew Tridgell 2006
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.
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, see <http://www.gnu.org/licenses/>.
20 #include "includes.h"
21 #include "tdb.h"
22 #include "system/network.h"
23 #include "system/filesys.h"
24 #include "system/wait.h"
25 #include "../include/ctdb_private.h"
28 return error string for last error
30 const char *ctdb_errstr(struct ctdb_context *ctdb)
32 return ctdb->err_msg;
37 remember an error message
39 void ctdb_set_error(struct ctdb_context *ctdb, const char *fmt, ...)
41 va_list ap;
42 talloc_free(ctdb->err_msg);
43 va_start(ap, fmt);
44 ctdb->err_msg = talloc_vasprintf(ctdb, fmt, ap);
45 DEBUG(DEBUG_ERR,("ctdb error: %s\n", ctdb->err_msg));
46 va_end(ap);
50 a fatal internal error occurred - no hope for recovery
52 void ctdb_fatal(struct ctdb_context *ctdb, const char *msg)
54 DEBUG(DEBUG_ALERT,("ctdb fatal error: %s\n", msg));
55 abort();
59 like ctdb_fatal() but a core/backtrace would not be useful
61 void ctdb_die(struct ctdb_context *ctdb, const char *msg)
63 DEBUG(DEBUG_ALERT,("ctdb exiting with error: %s\n", msg));
64 exit(1);
67 /* Invoke an external program to do some sort of tracing on the CTDB
68 * process. This might block for a little while. The external
69 * program is specified by the environment variable
70 * CTDB_EXTERNAL_TRACE. This program should take one argument: the
71 * pid of the process to trace. Commonly, the program would be a
72 * wrapper script around gcore.
74 void ctdb_external_trace(void)
77 const char * t = getenv("CTDB_EXTERNAL_TRACE");
78 char * cmd;
80 if (t == NULL) {
81 return;
84 cmd = talloc_asprintf(NULL, "%s %lu", t, (unsigned long) getpid());
85 DEBUG(DEBUG_WARNING,("begin external trace: %s\n", cmd));
86 system(cmd);
87 DEBUG(DEBUG_WARNING,("end external trace: %s\n", cmd));
88 talloc_free(cmd);
92 parse a IP:port pair
94 int ctdb_parse_address(struct ctdb_context *ctdb,
95 TALLOC_CTX *mem_ctx, const char *str,
96 struct ctdb_address *address)
98 struct servent *se;
100 setservent(0);
101 se = getservbyname("ctdb", "tcp");
102 endservent();
104 address->address = talloc_strdup(mem_ctx, str);
105 CTDB_NO_MEMORY(ctdb, address->address);
107 if (se == NULL) {
108 address->port = CTDB_PORT;
109 } else {
110 address->port = ntohs(se->s_port);
112 return 0;
117 check if two addresses are the same
119 bool ctdb_same_address(struct ctdb_address *a1, struct ctdb_address *a2)
121 return strcmp(a1->address, a2->address) == 0 && a1->port == a2->port;
126 hash function for mapping data to a VNN - taken from tdb
128 uint32_t ctdb_hash(const TDB_DATA *key)
130 return tdb_jenkins_hash(discard_const(key));
134 a type checking varient of idr_find
136 static void *_idr_find_type(struct idr_context *idp, int id, const char *type, const char *location)
138 void *p = idr_find(idp, id);
139 if (p && talloc_check_name(p, type) == NULL) {
140 DEBUG(DEBUG_ERR,("%s idr_find_type expected type %s but got %s\n",
141 location, type, talloc_get_name(p)));
142 return NULL;
144 return p;
147 uint32_t ctdb_reqid_new(struct ctdb_context *ctdb, void *state)
149 int id = idr_get_new_above(ctdb->idr, state, ctdb->lastid+1, INT_MAX);
150 if (id < 0) {
151 DEBUG(DEBUG_DEBUG, ("Reqid wrap!\n"));
152 id = idr_get_new(ctdb->idr, state, INT_MAX);
154 ctdb->lastid = id;
155 return id;
158 void *_ctdb_reqid_find(struct ctdb_context *ctdb, uint32_t reqid, const char *type, const char *location)
160 void *p;
162 p = _idr_find_type(ctdb->idr, reqid, type, location);
163 if (p == NULL) {
164 DEBUG(DEBUG_WARNING, ("Could not find idr:%u\n",reqid));
167 return p;
171 void ctdb_reqid_remove(struct ctdb_context *ctdb, uint32_t reqid)
173 int ret;
175 ret = idr_remove(ctdb->idr, reqid);
176 if (ret != 0) {
177 DEBUG(DEBUG_ERR, ("Removing idr that does not exist\n"));
182 static uint32_t ctdb_marshall_record_size(TDB_DATA key,
183 struct ctdb_ltdb_header *header,
184 TDB_DATA data)
186 return offsetof(struct ctdb_rec_data, data) + key.dsize +
187 data.dsize + (header ? sizeof(*header) : 0);
190 static void ctdb_marshall_record_copy(struct ctdb_rec_data *rec,
191 uint32_t reqid,
192 TDB_DATA key,
193 struct ctdb_ltdb_header *header,
194 TDB_DATA data,
195 uint32_t length)
197 uint32_t offset;
199 rec->length = length;
200 rec->reqid = reqid;
201 rec->keylen = key.dsize;
202 memcpy(&rec->data[0], key.dptr, key.dsize);
203 offset = key.dsize;
205 if (header) {
206 rec->datalen = data.dsize + sizeof(*header);
207 memcpy(&rec->data[offset], header, sizeof(*header));
208 offset += sizeof(*header);
209 } else {
210 rec->datalen = data.dsize;
212 memcpy(&rec->data[offset], data.dptr, data.dsize);
216 form a ctdb_rec_data record from a key/data pair
218 note that header may be NULL. If not NULL then it is included in the data portion
219 of the record
221 struct ctdb_rec_data *ctdb_marshall_record(TALLOC_CTX *mem_ctx, uint32_t reqid,
222 TDB_DATA key,
223 struct ctdb_ltdb_header *header,
224 TDB_DATA data)
226 size_t length;
227 struct ctdb_rec_data *d;
229 length = ctdb_marshall_record_size(key, header, data);
231 d = (struct ctdb_rec_data *)talloc_size(mem_ctx, length);
232 if (d == NULL) {
233 return NULL;
236 ctdb_marshall_record_copy(d, reqid, key, header, data, length);
237 return d;
241 /* helper function for marshalling multiple records */
242 struct ctdb_marshall_buffer *ctdb_marshall_add(TALLOC_CTX *mem_ctx,
243 struct ctdb_marshall_buffer *m,
244 uint64_t db_id,
245 uint32_t reqid,
246 TDB_DATA key,
247 struct ctdb_ltdb_header *header,
248 TDB_DATA data)
250 struct ctdb_rec_data *r;
251 struct ctdb_marshall_buffer *m2;
252 uint32_t length, offset;
254 length = ctdb_marshall_record_size(key, header, data);
256 if (m == NULL) {
257 offset = offsetof(struct ctdb_marshall_buffer, data);
258 m2 = talloc_zero_size(mem_ctx, offset + length);
259 } else {
260 offset = talloc_get_size(m);
261 m2 = talloc_realloc_size(mem_ctx, m, offset + length);
263 if (m2 == NULL) {
264 TALLOC_FREE(m);
265 return NULL;
268 if (m == NULL) {
269 m2->db_id = db_id;
272 r = (struct ctdb_rec_data *)((uint8_t *)m2 + offset);
273 ctdb_marshall_record_copy(r, reqid, key, header, data, length);
274 m2->count++;
276 return m2;
279 /* we've finished marshalling, return a data blob with the marshalled records */
280 TDB_DATA ctdb_marshall_finish(struct ctdb_marshall_buffer *m)
282 TDB_DATA data;
283 data.dptr = (uint8_t *)m;
284 data.dsize = talloc_get_size(m);
285 return data;
289 loop over a marshalling buffer
291 - pass r==NULL to start
292 - loop the number of times indicated by m->count
294 struct ctdb_rec_data *ctdb_marshall_loop_next(struct ctdb_marshall_buffer *m, struct ctdb_rec_data *r,
295 uint32_t *reqid,
296 struct ctdb_ltdb_header *header,
297 TDB_DATA *key, TDB_DATA *data)
299 if (r == NULL) {
300 r = (struct ctdb_rec_data *)&m->data[0];
301 } else {
302 r = (struct ctdb_rec_data *)(r->length + (uint8_t *)r);
305 if (reqid != NULL) {
306 *reqid = r->reqid;
309 if (key != NULL) {
310 key->dptr = &r->data[0];
311 key->dsize = r->keylen;
313 if (data != NULL) {
314 data->dptr = &r->data[r->keylen];
315 data->dsize = r->datalen;
316 if (header != NULL) {
317 data->dptr += sizeof(*header);
318 data->dsize -= sizeof(*header);
322 if (header != NULL) {
323 if (r->datalen < sizeof(*header)) {
324 return NULL;
326 *header = *(struct ctdb_ltdb_header *)&r->data[r->keylen];
329 return r;
333 This is used to canonicalize a ctdb_sock_addr structure.
335 void ctdb_canonicalize_ip(const ctdb_sock_addr *ip, ctdb_sock_addr *cip)
337 char prefix[12] = { 0,0,0,0,0,0,0,0,0,0,0xff,0xff };
339 memcpy(cip, ip, sizeof (*cip));
341 if ( (ip->sa.sa_family == AF_INET6)
342 && !memcmp(&ip->ip6.sin6_addr, prefix, 12)) {
343 memset(cip, 0, sizeof(*cip));
344 #ifdef HAVE_SOCK_SIN_LEN
345 cip->ip.sin_len = sizeof(*cip);
346 #endif
347 cip->ip.sin_family = AF_INET;
348 cip->ip.sin_port = ip->ip6.sin6_port;
349 memcpy(&cip->ip.sin_addr, &ip->ip6.sin6_addr.s6_addr[12], 4);
353 bool ctdb_same_ip(const ctdb_sock_addr *tip1, const ctdb_sock_addr *tip2)
355 ctdb_sock_addr ip1, ip2;
357 ctdb_canonicalize_ip(tip1, &ip1);
358 ctdb_canonicalize_ip(tip2, &ip2);
360 if (ip1.sa.sa_family != ip2.sa.sa_family) {
361 return false;
364 switch (ip1.sa.sa_family) {
365 case AF_INET:
366 return ip1.ip.sin_addr.s_addr == ip2.ip.sin_addr.s_addr;
367 case AF_INET6:
368 return !memcmp(&ip1.ip6.sin6_addr.s6_addr[0],
369 &ip2.ip6.sin6_addr.s6_addr[0],
370 16);
371 default:
372 DEBUG(DEBUG_ERR, (__location__ " CRITICAL Can not compare sockaddr structures of type %u\n", ip1.sa.sa_family));
373 return false;
376 return true;
380 compare two ctdb_sock_addr structures
382 bool ctdb_same_sockaddr(const ctdb_sock_addr *ip1, const ctdb_sock_addr *ip2)
384 return ctdb_same_ip(ip1, ip2) && ip1->ip.sin_port == ip2->ip.sin_port;
387 char *ctdb_addr_to_str(ctdb_sock_addr *addr)
389 static char cip[128] = "";
391 switch (addr->sa.sa_family) {
392 case AF_INET:
393 inet_ntop(addr->ip.sin_family, &addr->ip.sin_addr, cip, sizeof(cip));
394 break;
395 case AF_INET6:
396 inet_ntop(addr->ip6.sin6_family, &addr->ip6.sin6_addr, cip, sizeof(cip));
397 break;
398 default:
399 DEBUG(DEBUG_ERR, (__location__ " ERROR, unknown family %u\n", addr->sa.sa_family));
400 ctdb_external_trace();
403 return cip;
406 unsigned ctdb_addr_to_port(ctdb_sock_addr *addr)
408 switch (addr->sa.sa_family) {
409 case AF_INET:
410 return ntohs(addr->ip.sin_port);
411 break;
412 case AF_INET6:
413 return ntohs(addr->ip6.sin6_port);
414 break;
415 default:
416 DEBUG(DEBUG_ERR, (__location__ " ERROR, unknown family %u\n", addr->sa.sa_family));
419 return 0;
423 const char *ctdb_eventscript_call_names[] = {
424 "init",
425 "setup",
426 "startup",
427 "startrecovery",
428 "recovered",
429 "takeip",
430 "releaseip",
431 "stopped",
432 "monitor",
433 "status",
434 "shutdown",
435 "reload",
436 "updateip",
437 "ipreallocated"
440 /* Runstate handling */
441 static struct {
442 enum ctdb_runstate runstate;
443 const char * label;
444 } runstate_map[] = {
445 { CTDB_RUNSTATE_UNKNOWN, "UNKNOWN" },
446 { CTDB_RUNSTATE_INIT, "INIT" },
447 { CTDB_RUNSTATE_SETUP, "SETUP" },
448 { CTDB_RUNSTATE_FIRST_RECOVERY, "FIRST_RECOVERY" },
449 { CTDB_RUNSTATE_STARTUP, "STARTUP" },
450 { CTDB_RUNSTATE_RUNNING, "RUNNING" },
451 { CTDB_RUNSTATE_SHUTDOWN, "SHUTDOWN" },
452 { -1, NULL },
455 const char *runstate_to_string(enum ctdb_runstate runstate)
457 int i;
458 for (i=0; runstate_map[i].label != NULL ; i++) {
459 if (runstate_map[i].runstate == runstate) {
460 return runstate_map[i].label;
464 return runstate_map[0].label;
467 enum ctdb_runstate runstate_from_string(const char *label)
469 int i;
470 for (i=0; runstate_map[i].label != NULL; i++) {
471 if (strcasecmp(runstate_map[i].label, label) == 0) {
472 return runstate_map[i].runstate;
476 return CTDB_RUNSTATE_UNKNOWN;
479 void ctdb_set_runstate(struct ctdb_context *ctdb, enum ctdb_runstate runstate)
481 if (runstate <= ctdb->runstate) {
482 ctdb_fatal(ctdb, "runstate must always increase");
485 DEBUG(DEBUG_NOTICE,("Set runstate to %s (%d)\n",
486 runstate_to_string(runstate), runstate));
487 ctdb->runstate = runstate;