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1 /*
2 * Copyright (c) 2009-2010, Salvatore Sanfilippo <antirez at gmail dot com>
3 * All rights reserved.
4 *
5 * Redistribution and use in source and binary forms, with or without
6 * modification, are permitted provided that the following conditions are met:
7 *
8 * * Redistributions of source code must retain the above copyright notice,
9 * this list of conditions and the following disclaimer.
10 * * Redistributions in binary form must reproduce the above copyright
11 * notice, this list of conditions and the following disclaimer in the
12 * documentation and/or other materials provided with the distribution.
13 * * Neither the name of Redis nor the names of its contributors may be used
14 * to endorse or promote products derived from this software without
15 * specific prior written permission.
16 *
17 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
18 * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
19 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
20 * ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE
21 * LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
22 * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
23 * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
24 * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
25 * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
26 * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
27 * POSSIBILITY OF SUCH DAMAGE.
28 */
29
30 #include "redis.h"
31 #include "slowlog.h"
32 #include "bio.h"
33
34 #include <time.h>
35 #include <signal.h>
36 #include <sys/wait.h>
37 #include <errno.h>
38 #include <assert.h>
39 #include <ctype.h>
40 #include <stdarg.h>
41 #include <arpa/inet.h>
42 #include <sys/stat.h>
43 #include <fcntl.h>
44 #include <sys/time.h>
45 #include <sys/resource.h>
46 #include <sys/uio.h>
47 #include <limits.h>
48 #include <float.h>
49 #include <math.h>
50 #include <sys/resource.h>
51
52 /* Our shared "common" objects */
53
54 struct sharedObjectsStruct shared;
55
56 /* Global vars that are actually used as constants. The following double
57 * values are used for double on-disk serialization, and are initialized
58 * at runtime to avoid strange compiler optimizations. */
59
60 double R_Zero, R_PosInf, R_NegInf, R_Nan;
61
62 /*================================= Globals ================================= */
63
64 /* Global vars */
65 struct redisServer server; /* server global state */
66 struct redisCommand *commandTable;
67
68 /* Our command table.
69 *
70 * Every entry is composed of the following fields:
71 *
72 * name: a string representing the command name.
73 * function: pointer to the C function implementing the command.
74 * arity: number of arguments, it is possible to use -N to say >= N
75 * sflags: command flags as string. See below for a table of flags.
76 * flags: flags as bitmask. Computed by Redis using the 'sflags' field.
77 * get_keys_proc: an optional function to get key arguments from a command.
78 * This is only used when the following three fields are not
79 * enough to specify what arguments are keys.
80 * first_key_index: first argument that is a key
81 * last_key_index: last argument that is a key
82 * key_step: step to get all the keys from first to last argument. For instance
83 * in MSET the step is two since arguments are key,val,key,val,...
84 * microseconds: microseconds of total execution time for this command.
85 * calls: total number of calls of this command.
86 *
87 * The flags, microseconds and calls fields are computed by Redis and should
88 * always be set to zero.
89 *
90 * Command flags are expressed using strings where every character represents
91 * a flag. Later the populateCommandTable() function will take care of
92 * populating the real 'flags' field using this characters.
93 *
94 * This is the meaning of the flags:
95 *
96 * w: write command (may modify the key space).
97 * r: read command (will never modify the key space).
98 * m: may increase memory usage once called. Don't allow if out of memory.
99 * a: admin command, like SAVE or SHUTDOWN.
100 * p: Pub/Sub related command.
101 * f: force replication of this command, regarless of server.dirty.
102 * s: command not allowed in scripts.
103 * R: random command. Command is not deterministic, that is, the same command
104 * with the same arguments, with the same key space, may have different
105 * results. For instance SPOP and RANDOMKEY are two random commands.
106 * S: Sort command output array if called from script, so that the output
107 * is deterministic.
108 */
109 struct redisCommand redisCommandTable[] = {
110 {"get",getCommand,2,"r",0,NULL,1,1,1,0,0},
111 {"set",setCommand,3,"wm",0,noPreloadGetKeys,1,1,1,0,0},
112 {"setnx",setnxCommand,3,"wm",0,noPreloadGetKeys,1,1,1,0,0},
113 {"setex",setexCommand,4,"wm",0,noPreloadGetKeys,1,1,1,0,0},
114 {"psetex",psetexCommand,4,"wm",0,noPreloadGetKeys,1,1,1,0,0},
115 {"append",appendCommand,3,"wm",0,NULL,1,1,1,0,0},
116 {"strlen",strlenCommand,2,"r",0,NULL,1,1,1,0,0},
117 {"del",delCommand,-2,"w",0,noPreloadGetKeys,1,-1,1,0,0},
118 {"exists",existsCommand,2,"r",0,NULL,1,1,1,0,0},
119 {"setbit",setbitCommand,4,"wm",0,NULL,1,1,1,0,0},
120 {"getbit",getbitCommand,3,"r",0,NULL,1,1,1,0,0},
121 {"setrange",setrangeCommand,4,"wm",0,NULL,1,1,1,0,0},
122 {"getrange",getrangeCommand,4,"r",0,NULL,1,1,1,0,0},
123 {"substr",getrangeCommand,4,"r",0,NULL,1,1,1,0,0},
124 {"incr",incrCommand,2,"wm",0,NULL,1,1,1,0,0},
125 {"decr",decrCommand,2,"wm",0,NULL,1,1,1,0,0},
126 {"mget",mgetCommand,-2,"r",0,NULL,1,-1,1,0,0},
127 {"rpush",rpushCommand,-3,"wm",0,NULL,1,1,1,0,0},
128 {"lpush",lpushCommand,-3,"wm",0,NULL,1,1,1,0,0},
129 {"rpushx",rpushxCommand,3,"wm",0,NULL,1,1,1,0,0},
130 {"lpushx",lpushxCommand,3,"wm",0,NULL,1,1,1,0,0},
131 {"linsert",linsertCommand,5,"wm",0,NULL,1,1,1,0,0},
132 {"rpop",rpopCommand,2,"w",0,NULL,1,1,1,0,0},
133 {"lpop",lpopCommand,2,"w",0,NULL,1,1,1,0,0},
134 {"brpop",brpopCommand,-3,"ws",0,NULL,1,1,1,0,0},
135 {"brpoplpush",brpoplpushCommand,4,"wms",0,NULL,1,2,1,0,0},
136 {"blpop",blpopCommand,-3,"ws",0,NULL,1,-2,1,0,0},
137 {"llen",llenCommand,2,"r",0,NULL,1,1,1,0,0},
138 {"lindex",lindexCommand,3,"r",0,NULL,1,1,1,0,0},
139 {"lset",lsetCommand,4,"wm",0,NULL,1,1,1,0,0},
140 {"lrange",lrangeCommand,4,"r",0,NULL,1,1,1,0,0},
141 {"ltrim",ltrimCommand,4,"w",0,NULL,1,1,1,0,0},
142 {"lrem",lremCommand,4,"w",0,NULL,1,1,1,0,0},
143 {"rpoplpush",rpoplpushCommand,3,"wm",0,NULL,1,2,1,0,0},
144 {"sadd",saddCommand,-3,"wm",0,NULL,1,1,1,0,0},
145 {"srem",sremCommand,-3,"w",0,NULL,1,1,1,0,0},
146 {"smove",smoveCommand,4,"w",0,NULL,1,2,1,0,0},
147 {"sismember",sismemberCommand,3,"r",0,NULL,1,1,1,0,0},
148 {"scard",scardCommand,2,"r",0,NULL,1,1,1,0,0},
149 {"spop",spopCommand,2,"wRs",0,NULL,1,1,1,0,0},
150 {"srandmember",srandmemberCommand,2,"rR",0,NULL,1,1,1,0,0},
151 {"sinter",sinterCommand,-2,"rS",0,NULL,1,-1,1,0,0},
152 {"sinterstore",sinterstoreCommand,-3,"wm",0,NULL,1,-1,1,0,0},
153 {"sunion",sunionCommand,-2,"rS",0,NULL,1,-1,1,0,0},
154 {"sunionstore",sunionstoreCommand,-3,"wm",0,NULL,1,-1,1,0,0},
155 {"sdiff",sdiffCommand,-2,"rS",0,NULL,1,-1,1,0,0},
156 {"sdiffstore",sdiffstoreCommand,-3,"wm",0,NULL,1,-1,1,0,0},
157 {"smembers",sinterCommand,2,"rS",0,NULL,1,1,1,0,0},
158 {"zadd",zaddCommand,-4,"wm",0,NULL,1,1,1,0,0},
159 {"zincrby",zincrbyCommand,4,"wm",0,NULL,1,1,1,0,0},
160 {"zrem",zremCommand,-3,"w",0,NULL,1,1,1,0,0},
161 {"zremrangebyscore",zremrangebyscoreCommand,4,"w",0,NULL,1,1,1,0,0},
162 {"zremrangebyrank",zremrangebyrankCommand,4,"w",0,NULL,1,1,1,0,0},
163 {"zunionstore",zunionstoreCommand,-4,"wm",0,zunionInterGetKeys,0,0,0,0,0},
164 {"zinterstore",zinterstoreCommand,-4,"wm",0,zunionInterGetKeys,0,0,0,0,0},
165 {"zrange",zrangeCommand,-4,"r",0,NULL,1,1,1,0,0},
166 {"zrangebyscore",zrangebyscoreCommand,-4,"r",0,NULL,1,1,1,0,0},
167 {"zrevrangebyscore",zrevrangebyscoreCommand,-4,"r",0,NULL,1,1,1,0,0},
168 {"zcount",zcountCommand,4,"r",0,NULL,1,1,1,0,0},
169 {"zrevrange",zrevrangeCommand,-4,"r",0,NULL,1,1,1,0,0},
170 {"zcard",zcardCommand,2,"r",0,NULL,1,1,1,0,0},
171 {"zscore",zscoreCommand,3,"r",0,NULL,1,1,1,0,0},
172 {"zrank",zrankCommand,3,"r",0,NULL,1,1,1,0,0},
173 {"zrevrank",zrevrankCommand,3,"r",0,NULL,1,1,1,0,0},
174 {"hset",hsetCommand,4,"wm",0,NULL,1,1,1,0,0},
175 {"hsetnx",hsetnxCommand,4,"wm",0,NULL,1,1,1,0,0},
176 {"hget",hgetCommand,3,"r",0,NULL,1,1,1,0,0},
177 {"hmset",hmsetCommand,-4,"wm",0,NULL,1,1,1,0,0},
178 {"hmget",hmgetCommand,-3,"r",0,NULL,1,1,1,0,0},
179 {"hincrby",hincrbyCommand,4,"wm",0,NULL,1,1,1,0,0},
180 {"hincrbyfloat",hincrbyfloatCommand,4,"wm",0,NULL,1,1,1,0,0},
181 {"hdel",hdelCommand,-3,"w",0,NULL,1,1,1,0,0},
182 {"hlen",hlenCommand,2,"r",0,NULL,1,1,1,0,0},
183 {"hkeys",hkeysCommand,2,"rS",0,NULL,1,1,1,0,0},
184 {"hvals",hvalsCommand,2,"rS",0,NULL,1,1,1,0,0},
185 {"hgetall",hgetallCommand,2,"r",0,NULL,1,1,1,0,0},
186 {"hexists",hexistsCommand,3,"r",0,NULL,1,1,1,0,0},
187 {"incrby",incrbyCommand,3,"wm",0,NULL,1,1,1,0,0},
188 {"decrby",decrbyCommand,3,"wm",0,NULL,1,1,1,0,0},
189 {"incrbyfloat",incrbyfloatCommand,3,"wm",0,NULL,1,1,1,0,0},
190 {"getset",getsetCommand,3,"wm",0,NULL,1,1,1,0,0},
191 {"mset",msetCommand,-3,"wm",0,NULL,1,-1,2,0,0},
192 {"msetnx",msetnxCommand,-3,"wm",0,NULL,1,-1,2,0,0},
193 {"randomkey",randomkeyCommand,1,"rR",0,NULL,0,0,0,0,0},
194 {"select",selectCommand,2,"r",0,NULL,0,0,0,0,0},
195 {"move",moveCommand,3,"w",0,NULL,1,1,1,0,0},
196 {"rename",renameCommand,3,"w",0,renameGetKeys,1,2,1,0,0},
197 {"renamenx",renamenxCommand,3,"w",0,renameGetKeys,1,2,1,0,0},
198 {"expire",expireCommand,3,"w",0,NULL,1,1,1,0,0},
199 {"expireat",expireatCommand,3,"w",0,NULL,1,1,1,0,0},
200 {"pexpire",pexpireCommand,3,"w",0,NULL,1,1,1,0,0},
201 {"pexpireat",pexpireatCommand,3,"w",0,NULL,1,1,1,0,0},
202 {"keys",keysCommand,2,"rS",0,NULL,0,0,0,0,0},
203 {"dbsize",dbsizeCommand,1,"r",0,NULL,0,0,0,0,0},
204 {"auth",authCommand,2,"rs",0,NULL,0,0,0,0,0},
205 {"ping",pingCommand,1,"r",0,NULL,0,0,0,0,0},
206 {"echo",echoCommand,2,"r",0,NULL,0,0,0,0,0},
207 {"save",saveCommand,1,"ars",0,NULL,0,0,0,0,0},
208 {"bgsave",bgsaveCommand,1,"ar",0,NULL,0,0,0,0,0},
209 {"bgrewriteaof",bgrewriteaofCommand,1,"ar",0,NULL,0,0,0,0,0},
210 {"shutdown",shutdownCommand,-1,"ar",0,NULL,0,0,0,0,0},
211 {"lastsave",lastsaveCommand,1,"r",0,NULL,0,0,0,0,0},
212 {"type",typeCommand,2,"r",0,NULL,1,1,1,0,0},
213 {"multi",multiCommand,1,"rs",0,NULL,0,0,0,0,0},
214 {"exec",execCommand,1,"wms",0,NULL,0,0,0,0,0},
215 {"discard",discardCommand,1,"rs",0,NULL,0,0,0,0,0},
216 {"sync",syncCommand,1,"ars",0,NULL,0,0,0,0,0},
217 {"flushdb",flushdbCommand,1,"w",0,NULL,0,0,0,0,0},
218 {"flushall",flushallCommand,1,"w",0,NULL,0,0,0,0,0},
219 {"sort",sortCommand,-2,"wmS",0,NULL,1,1,1,0,0},
220 {"info",infoCommand,-1,"r",0,NULL,0,0,0,0,0},
221 {"monitor",monitorCommand,1,"ars",0,NULL,0,0,0,0,0},
222 {"ttl",ttlCommand,2,"r",0,NULL,1,1,1,0,0},
223 {"pttl",pttlCommand,2,"r",0,NULL,1,1,1,0,0},
224 {"persist",persistCommand,2,"w",0,NULL,1,1,1,0,0},
225 {"slaveof",slaveofCommand,3,"aws",0,NULL,0,0,0,0,0},
226 {"debug",debugCommand,-2,"aws",0,NULL,0,0,0,0,0},
227 {"config",configCommand,-2,"ar",0,NULL,0,0,0,0,0},
228 {"subscribe",subscribeCommand,-2,"rps",0,NULL,0,0,0,0,0},
229 {"unsubscribe",unsubscribeCommand,-1,"rps",0,NULL,0,0,0,0,0},
230 {"psubscribe",psubscribeCommand,-2,"rps",0,NULL,0,0,0,0,0},
231 {"punsubscribe",punsubscribeCommand,-1,"rps",0,NULL,0,0,0,0,0},
232 {"publish",publishCommand,3,"rpf",0,NULL,0,0,0,0,0},
233 {"watch",watchCommand,-2,"rs",0,noPreloadGetKeys,1,-1,1,0,0},
234 {"unwatch",unwatchCommand,1,"rs",0,NULL,0,0,0,0,0},
235 {"cluster",clusterCommand,-2,"ar",0,NULL,0,0,0,0,0},
236 {"restore",restoreCommand,4,"awm",0,NULL,1,1,1,0,0},
237 {"migrate",migrateCommand,6,"aw",0,NULL,0,0,0,0,0},
238 {"asking",askingCommand,1,"r",0,NULL,0,0,0,0,0},
239 {"dump",dumpCommand,2,"ar",0,NULL,1,1,1,0,0},
240 {"object",objectCommand,-2,"r",0,NULL,2,2,2,0,0},
241 {"client",clientCommand,-2,"ar",0,NULL,0,0,0,0,0},
242 {"eval",evalCommand,-3,"wms",0,zunionInterGetKeys,0,0,0,0,0},
243 {"evalsha",evalShaCommand,-3,"wms",0,zunionInterGetKeys,0,0,0,0,0},
244 {"slowlog",slowlogCommand,-2,"r",0,NULL,0,0,0,0,0},
245 {"script",scriptCommand,-2,"ras",0,NULL,0,0,0,0,0},
246 {"time",timeCommand,1,"rR",0,NULL,0,0,0,0,0}
247 };
248
249 /*============================ Utility functions ============================ */
250
251 /* Low level logging. To use only for very big messages, otherwise
252 * redisLog() is to prefer. */
253 void redisLogRaw(int level, const char *msg) {
254 const int syslogLevelMap[] = { LOG_DEBUG, LOG_INFO, LOG_NOTICE, LOG_WARNING };
255 const char *c = ".-*#";
256 time_t now = time(NULL);
257 FILE *fp;
258 char buf[64];
259 int rawmode = (level & REDIS_LOG_RAW);
260
261 level &= 0xff; /* clear flags */
262 if (level < server.verbosity) return;
263
264 fp = (server.logfile == NULL) ? stdout : fopen(server.logfile,"a");
265 if (!fp) return;
266
267 if (rawmode) {
268 fprintf(fp,"%s",msg);
269 } else {
270 strftime(buf,sizeof(buf),"%d %b %H:%M:%S",localtime(&now));
271 fprintf(fp,"[%d] %s %c %s\n",(int)getpid(),buf,c[level],msg);
272 }
273 fflush(fp);
274
275 if (server.logfile) fclose(fp);
276
277 if (server.syslog_enabled) syslog(syslogLevelMap[level], "%s", msg);
278 }
279
280 /* Like redisLogRaw() but with printf-alike support. This is the funciton that
281 * is used across the code. The raw version is only used in order to dump
282 * the INFO output on crash. */
283 void redisLog(int level, const char *fmt, ...) {
284 va_list ap;
285 char msg[REDIS_MAX_LOGMSG_LEN];
286
287 if ((level&0xff) < server.verbosity) return;
288
289 va_start(ap, fmt);
290 vsnprintf(msg, sizeof(msg), fmt, ap);
291 va_end(ap);
292
293 redisLogRaw(level,msg);
294 }
295
296 /* Redis generally does not try to recover from out of memory conditions
297 * when allocating objects or strings, it is not clear if it will be possible
298 * to report this condition to the client since the networking layer itself
299 * is based on heap allocation for send buffers, so we simply abort.
300 * At least the code will be simpler to read... */
301 void oom(const char *msg) {
302 redisLog(REDIS_WARNING, "%s: Out of memory\n",msg);
303 sleep(1);
304 abort();
305 }
306
307 /* Return the UNIX time in microseconds */
308 long long ustime(void) {
309 struct timeval tv;
310 long long ust;
311
312 gettimeofday(&tv, NULL);
313 ust = ((long long)tv.tv_sec)*1000000;
314 ust += tv.tv_usec;
315 return ust;
316 }
317
318 /* Return the UNIX time in milliseconds */
319 long long mstime(void) {
320 return ustime()/1000;
321 }
322
323 /*====================== Hash table type implementation ==================== */
324
325 /* This is an hash table type that uses the SDS dynamic strings libary as
326 * keys and radis objects as values (objects can hold SDS strings,
327 * lists, sets). */
328
329 void dictVanillaFree(void *privdata, void *val)
330 {
331 DICT_NOTUSED(privdata);
332 zfree(val);
333 }
334
335 void dictListDestructor(void *privdata, void *val)
336 {
337 DICT_NOTUSED(privdata);
338 listRelease((list*)val);
339 }
340
341 int dictSdsKeyCompare(void *privdata, const void *key1,
342 const void *key2)
343 {
344 int l1,l2;
345 DICT_NOTUSED(privdata);
346
347 l1 = sdslen((sds)key1);
348 l2 = sdslen((sds)key2);
349 if (l1 != l2) return 0;
350 return memcmp(key1, key2, l1) == 0;
351 }
352
353 /* A case insensitive version used for the command lookup table. */
354 int dictSdsKeyCaseCompare(void *privdata, const void *key1,
355 const void *key2)
356 {
357 DICT_NOTUSED(privdata);
358
359 return strcasecmp(key1, key2) == 0;
360 }
361
362 void dictRedisObjectDestructor(void *privdata, void *val)
363 {
364 DICT_NOTUSED(privdata);
365
366 if (val == NULL) return; /* Values of swapped out keys as set to NULL */
367 decrRefCount(val);
368 }
369
370 void dictSdsDestructor(void *privdata, void *val)
371 {
372 DICT_NOTUSED(privdata);
373
374 sdsfree(val);
375 }
376
377 int dictObjKeyCompare(void *privdata, const void *key1,
378 const void *key2)
379 {
380 const robj *o1 = key1, *o2 = key2;
381 return dictSdsKeyCompare(privdata,o1->ptr,o2->ptr);
382 }
383
384 unsigned int dictObjHash(const void *key) {
385 const robj *o = key;
386 return dictGenHashFunction(o->ptr, sdslen((sds)o->ptr));
387 }
388
389 unsigned int dictSdsHash(const void *key) {
390 return dictGenHashFunction((unsigned char*)key, sdslen((char*)key));
391 }
392
393 unsigned int dictSdsCaseHash(const void *key) {
394 return dictGenCaseHashFunction((unsigned char*)key, sdslen((char*)key));
395 }
396
397 int dictEncObjKeyCompare(void *privdata, const void *key1,
398 const void *key2)
399 {
400 robj *o1 = (robj*) key1, *o2 = (robj*) key2;
401 int cmp;
402
403 if (o1->encoding == REDIS_ENCODING_INT &&
404 o2->encoding == REDIS_ENCODING_INT)
405 return o1->ptr == o2->ptr;
406
407 o1 = getDecodedObject(o1);
408 o2 = getDecodedObject(o2);
409 cmp = dictSdsKeyCompare(privdata,o1->ptr,o2->ptr);
410 decrRefCount(o1);
411 decrRefCount(o2);
412 return cmp;
413 }
414
415 unsigned int dictEncObjHash(const void *key) {
416 robj *o = (robj*) key;
417
418 if (o->encoding == REDIS_ENCODING_RAW) {
419 return dictGenHashFunction(o->ptr, sdslen((sds)o->ptr));
420 } else {
421 if (o->encoding == REDIS_ENCODING_INT) {
422 char buf[32];
423 int len;
424
425 len = ll2string(buf,32,(long)o->ptr);
426 return dictGenHashFunction((unsigned char*)buf, len);
427 } else {
428 unsigned int hash;
429
430 o = getDecodedObject(o);
431 hash = dictGenHashFunction(o->ptr, sdslen((sds)o->ptr));
432 decrRefCount(o);
433 return hash;
434 }
435 }
436 }
437
438 /* Sets type hash table */
439 dictType setDictType = {
440 dictEncObjHash, /* hash function */
441 NULL, /* key dup */
442 NULL, /* val dup */
443 dictEncObjKeyCompare, /* key compare */
444 dictRedisObjectDestructor, /* key destructor */
445 NULL /* val destructor */
446 };
447
448 /* Sorted sets hash (note: a skiplist is used in addition to the hash table) */
449 dictType zsetDictType = {
450 dictEncObjHash, /* hash function */
451 NULL, /* key dup */
452 NULL, /* val dup */
453 dictEncObjKeyCompare, /* key compare */
454 dictRedisObjectDestructor, /* key destructor */
455 NULL /* val destructor */
456 };
457
458 /* Db->dict, keys are sds strings, vals are Redis objects. */
459 dictType dbDictType = {
460 dictSdsHash, /* hash function */
461 NULL, /* key dup */
462 NULL, /* val dup */
463 dictSdsKeyCompare, /* key compare */
464 dictSdsDestructor, /* key destructor */
465 dictRedisObjectDestructor /* val destructor */
466 };
467
468 /* Db->expires */
469 dictType keyptrDictType = {
470 dictSdsHash, /* hash function */
471 NULL, /* key dup */
472 NULL, /* val dup */
473 dictSdsKeyCompare, /* key compare */
474 NULL, /* key destructor */
475 NULL /* val destructor */
476 };
477
478 /* Command table. sds string -> command struct pointer. */
479 dictType commandTableDictType = {
480 dictSdsCaseHash, /* hash function */
481 NULL, /* key dup */
482 NULL, /* val dup */
483 dictSdsKeyCaseCompare, /* key compare */
484 dictSdsDestructor, /* key destructor */
485 NULL /* val destructor */
486 };
487
488 /* Hash type hash table (note that small hashes are represented with zimpaps) */
489 dictType hashDictType = {
490 dictEncObjHash, /* hash function */
491 NULL, /* key dup */
492 NULL, /* val dup */
493 dictEncObjKeyCompare, /* key compare */
494 dictRedisObjectDestructor, /* key destructor */
495 dictRedisObjectDestructor /* val destructor */
496 };
497
498 /* Keylist hash table type has unencoded redis objects as keys and
499 * lists as values. It's used for blocking operations (BLPOP) and to
500 * map swapped keys to a list of clients waiting for this keys to be loaded. */
501 dictType keylistDictType = {
502 dictObjHash, /* hash function */
503 NULL, /* key dup */
504 NULL, /* val dup */
505 dictObjKeyCompare, /* key compare */
506 dictRedisObjectDestructor, /* key destructor */
507 dictListDestructor /* val destructor */
508 };
509
510 /* Cluster nodes hash table, mapping nodes addresses 1.2.3.4:6379 to
511 * clusterNode structures. */
512 dictType clusterNodesDictType = {
513 dictSdsHash, /* hash function */
514 NULL, /* key dup */
515 NULL, /* val dup */
516 dictSdsKeyCompare, /* key compare */
517 dictSdsDestructor, /* key destructor */
518 NULL /* val destructor */
519 };
520
521 int htNeedsResize(dict *dict) {
522 long long size, used;
523
524 size = dictSlots(dict);
525 used = dictSize(dict);
526 return (size && used && size > DICT_HT_INITIAL_SIZE &&
527 (used*100/size < REDIS_HT_MINFILL));
528 }
529
530 /* If the percentage of used slots in the HT reaches REDIS_HT_MINFILL
531 * we resize the hash table to save memory */
532 void tryResizeHashTables(void) {
533 int j;
534
535 for (j = 0; j < server.dbnum; j++) {
536 if (htNeedsResize(server.db[j].dict))
537 dictResize(server.db[j].dict);
538 if (htNeedsResize(server.db[j].expires))
539 dictResize(server.db[j].expires);
540 }
541 }
542
543 /* Our hash table implementation performs rehashing incrementally while
544 * we write/read from the hash table. Still if the server is idle, the hash
545 * table will use two tables for a long time. So we try to use 1 millisecond
546 * of CPU time at every serverCron() loop in order to rehash some key. */
547 void incrementallyRehash(void) {
548 int j;
549
550 for (j = 0; j < server.dbnum; j++) {
551 if (dictIsRehashing(server.db[j].dict)) {
552 dictRehashMilliseconds(server.db[j].dict,1);
553 break; /* already used our millisecond for this loop... */
554 }
555 }
556 }
557
558 /* This function is called once a background process of some kind terminates,
559 * as we want to avoid resizing the hash tables when there is a child in order
560 * to play well with copy-on-write (otherwise when a resize happens lots of
561 * memory pages are copied). The goal of this function is to update the ability
562 * for dict.c to resize the hash tables accordingly to the fact we have o not
563 * running childs. */
564 void updateDictResizePolicy(void) {
565 if (server.rdb_child_pid == -1 && server.aof_child_pid == -1)
566 dictEnableResize();
567 else
568 dictDisableResize();
569 }
570
571 /* ======================= Cron: called every 100 ms ======================== */
572
573 /* Try to expire a few timed out keys. The algorithm used is adaptive and
574 * will use few CPU cycles if there are few expiring keys, otherwise
575 * it will get more aggressive to avoid that too much memory is used by
576 * keys that can be removed from the keyspace. */
577 void activeExpireCycle(void) {
578 int j;
579
580 for (j = 0; j < server.dbnum; j++) {
581 int expired;
582 redisDb *db = server.db+j;
583
584 /* Continue to expire if at the end of the cycle more than 25%
585 * of the keys were expired. */
586 do {
587 long num = dictSize(db->expires);
588 long long now = mstime();
589
590 expired = 0;
591 if (num > REDIS_EXPIRELOOKUPS_PER_CRON)
592 num = REDIS_EXPIRELOOKUPS_PER_CRON;
593 while (num--) {
594 dictEntry *de;
595 long long t;
596
597 if ((de = dictGetRandomKey(db->expires)) == NULL) break;
598 t = dictGetSignedIntegerVal(de);
599 if (now > t) {
600 sds key = dictGetKey(de);
601 robj *keyobj = createStringObject(key,sdslen(key));
602
603 propagateExpire(db,keyobj);
604 dbDelete(db,keyobj);
605 decrRefCount(keyobj);
606 expired++;
607 server.stat_expiredkeys++;
608 }
609 }
610 } while (expired > REDIS_EXPIRELOOKUPS_PER_CRON/4);
611 }
612 }
613
614 void updateLRUClock(void) {
615 server.lruclock = (time(NULL)/REDIS_LRU_CLOCK_RESOLUTION) &
616 REDIS_LRU_CLOCK_MAX;
617 }
618
619 int serverCron(struct aeEventLoop *eventLoop, long long id, void *clientData) {
620 int j, loops = server.cronloops;
621 REDIS_NOTUSED(eventLoop);
622 REDIS_NOTUSED(id);
623 REDIS_NOTUSED(clientData);
624
625 /* We take a cached value of the unix time in the global state because
626 * with virtual memory and aging there is to store the current time
627 * in objects at every object access, and accuracy is not needed.
628 * To access a global var is faster than calling time(NULL) */
629 server.unixtime = time(NULL);
630
631 /* We have just 22 bits per object for LRU information.
632 * So we use an (eventually wrapping) LRU clock with 10 seconds resolution.
633 * 2^22 bits with 10 seconds resoluton is more or less 1.5 years.
634 *
635 * Note that even if this will wrap after 1.5 years it's not a problem,
636 * everything will still work but just some object will appear younger
637 * to Redis. But for this to happen a given object should never be touched
638 * for 1.5 years.
639 *
640 * Note that you can change the resolution altering the
641 * REDIS_LRU_CLOCK_RESOLUTION define.
642 */
643 updateLRUClock();
644
645 /* Record the max memory used since the server was started. */
646 if (zmalloc_used_memory() > server.stat_peak_memory)
647 server.stat_peak_memory = zmalloc_used_memory();
648
649 /* We received a SIGTERM, shutting down here in a safe way, as it is
650 * not ok doing so inside the signal handler. */
651 if (server.shutdown_asap) {
652 if (prepareForShutdown(0) == REDIS_OK) exit(0);
653 redisLog(REDIS_WARNING,"SIGTERM received but errors trying to shut down the server, check the logs for more information");
654 }
655
656 /* Show some info about non-empty databases */
657 for (j = 0; j < server.dbnum; j++) {
658 long long size, used, vkeys;
659
660 size = dictSlots(server.db[j].dict);
661 used = dictSize(server.db[j].dict);
662 vkeys = dictSize(server.db[j].expires);
663 if (!(loops % 50) && (used || vkeys)) {
664 redisLog(REDIS_VERBOSE,"DB %d: %lld keys (%lld volatile) in %lld slots HT.",j,used,vkeys,size);
665 /* dictPrintStats(server.dict); */
666 }
667 }
668
669 /* We don't want to resize the hash tables while a bacground saving
670 * is in progress: the saving child is created using fork() that is
671 * implemented with a copy-on-write semantic in most modern systems, so
672 * if we resize the HT while there is the saving child at work actually
673 * a lot of memory movements in the parent will cause a lot of pages
674 * copied. */
675 if (server.rdb_child_pid == -1 && server.aof_child_pid == -1) {
676 if (!(loops % 10)) tryResizeHashTables();
677 if (server.activerehashing) incrementallyRehash();
678 }
679
680 /* Show information about connected clients */
681 if (!(loops % 50)) {
682 redisLog(REDIS_VERBOSE,"%d clients connected (%d slaves), %zu bytes in use",
683 listLength(server.clients)-listLength(server.slaves),
684 listLength(server.slaves),
685 zmalloc_used_memory());
686 }
687
688 /* Close connections of timedout clients */
689 if ((server.maxidletime && !(loops % 100)) || server.bpop_blocked_clients)
690 closeTimedoutClients();
691
692 /* Start a scheduled AOF rewrite if this was requested by the user while
693 * a BGSAVE was in progress. */
694 if (server.rdb_child_pid == -1 && server.aof_child_pid == -1 &&
695 server.aof_rewrite_scheduled)
696 {
697 rewriteAppendOnlyFileBackground();
698 }
699
700 /* Check if a background saving or AOF rewrite in progress terminated. */
701 if (server.rdb_child_pid != -1 || server.aof_child_pid != -1) {
702 int statloc;
703 pid_t pid;
704
705 if ((pid = wait3(&statloc,WNOHANG,NULL)) != 0) {
706 int exitcode = WEXITSTATUS(statloc);
707 int bysignal = 0;
708
709 if (WIFSIGNALED(statloc)) bysignal = WTERMSIG(statloc);
710
711 if (pid == server.rdb_child_pid) {
712 backgroundSaveDoneHandler(exitcode,bysignal);
713 } else {
714 backgroundRewriteDoneHandler(exitcode,bysignal);
715 }
716 updateDictResizePolicy();
717 }
718 } else {
719 time_t now = time(NULL);
720
721 /* If there is not a background saving/rewrite in progress check if
722 * we have to save/rewrite now */
723 for (j = 0; j < server.saveparamslen; j++) {
724 struct saveparam *sp = server.saveparams+j;
725
726 if (server.dirty >= sp->changes &&
727 now-server.lastsave > sp->seconds) {
728 redisLog(REDIS_NOTICE,"%d changes in %d seconds. Saving...",
729 sp->changes, sp->seconds);
730 rdbSaveBackground(server.rdb_filename);
731 break;
732 }
733 }
734
735 /* Trigger an AOF rewrite if needed */
736 if (server.rdb_child_pid == -1 &&
737 server.aof_child_pid == -1 &&
738 server.aof_rewrite_perc &&
739 server.aof_current_size > server.aof_rewrite_min_size)
740 {
741 long long base = server.aof_rewrite_base_size ?
742 server.aof_rewrite_base_size : 1;
743 long long growth = (server.aof_current_size*100/base) - 100;
744 if (growth >= server.aof_rewrite_perc) {
745 redisLog(REDIS_NOTICE,"Starting automatic rewriting of AOF on %lld%% growth",growth);
746 rewriteAppendOnlyFileBackground();
747 }
748 }
749 }
750
751
752 /* If we postponed an AOF buffer flush, let's try to do it every time the
753 * cron function is called. */
754 if (server.aof_flush_postponed_start) flushAppendOnlyFile(0);
755
756 /* Expire a few keys per cycle, only if this is a master.
757 * On slaves we wait for DEL operations synthesized by the master
758 * in order to guarantee a strict consistency. */
759 if (server.masterhost == NULL) activeExpireCycle();
760
761 /* Close clients that need to be closed asynchronous */
762 freeClientsInAsyncFreeQueue();
763
764 /* Replication cron function -- used to reconnect to master and
765 * to detect transfer failures. */
766 if (!(loops % 10)) replicationCron();
767
768 /* Run other sub-systems specific cron jobs */
769 if (server.cluster_enabled && !(loops % 10)) clusterCron();
770
771 server.cronloops++;
772 return 100;
773 }
774
775 /* This function gets called every time Redis is entering the
776 * main loop of the event driven library, that is, before to sleep
777 * for ready file descriptors. */
778 void beforeSleep(struct aeEventLoop *eventLoop) {
779 REDIS_NOTUSED(eventLoop);
780 listNode *ln;
781 redisClient *c;
782
783 /* Try to process pending commands for clients that were just unblocked. */
784 while (listLength(server.unblocked_clients)) {
785 ln = listFirst(server.unblocked_clients);
786 redisAssert(ln != NULL);
787 c = ln->value;
788 listDelNode(server.unblocked_clients,ln);
789 c->flags &= ~REDIS_UNBLOCKED;
790
791 /* Process remaining data in the input buffer. */
792 if (c->querybuf && sdslen(c->querybuf) > 0) {
793 server.current_client = c;
794 processInputBuffer(c);
795 server.current_client = NULL;
796 }
797 }
798
799 /* Write the AOF buffer on disk */
800 flushAppendOnlyFile(0);
801 }
802
803 /* =========================== Server initialization ======================== */
804
805 void createSharedObjects(void) {
806 int j;
807
808 shared.crlf = createObject(REDIS_STRING,sdsnew("\r\n"));
809 shared.ok = createObject(REDIS_STRING,sdsnew("+OK\r\n"));
810 shared.err = createObject(REDIS_STRING,sdsnew("-ERR\r\n"));
811 shared.emptybulk = createObject(REDIS_STRING,sdsnew("$0\r\n\r\n"));
812 shared.czero = createObject(REDIS_STRING,sdsnew(":0\r\n"));
813 shared.cone = createObject(REDIS_STRING,sdsnew(":1\r\n"));
814 shared.cnegone = createObject(REDIS_STRING,sdsnew(":-1\r\n"));
815 shared.nullbulk = createObject(REDIS_STRING,sdsnew("$-1\r\n"));
816 shared.nullmultibulk = createObject(REDIS_STRING,sdsnew("*-1\r\n"));
817 shared.emptymultibulk = createObject(REDIS_STRING,sdsnew("*0\r\n"));
818 shared.pong = createObject(REDIS_STRING,sdsnew("+PONG\r\n"));
819 shared.queued = createObject(REDIS_STRING,sdsnew("+QUEUED\r\n"));
820 shared.wrongtypeerr = createObject(REDIS_STRING,sdsnew(
821 "-ERR Operation against a key holding the wrong kind of value\r\n"));
822 shared.nokeyerr = createObject(REDIS_STRING,sdsnew(
823 "-ERR no such key\r\n"));
824 shared.syntaxerr = createObject(REDIS_STRING,sdsnew(
825 "-ERR syntax error\r\n"));
826 shared.sameobjecterr = createObject(REDIS_STRING,sdsnew(
827 "-ERR source and destination objects are the same\r\n"));
828 shared.outofrangeerr = createObject(REDIS_STRING,sdsnew(
829 "-ERR index out of range\r\n"));
830 shared.noscripterr = createObject(REDIS_STRING,sdsnew(
831 "-NOSCRIPT No matching script. Please use EVAL.\r\n"));
832 shared.loadingerr = createObject(REDIS_STRING,sdsnew(
833 "-LOADING Redis is loading the dataset in memory\r\n"));
834 shared.slowscripterr = createObject(REDIS_STRING,sdsnew(
835 "-BUSY Redis is busy running a script. You can only call SCRIPT KILL or SHUTDOWN NOSAVE.\r\n"));
836 shared.space = createObject(REDIS_STRING,sdsnew(" "));
837 shared.colon = createObject(REDIS_STRING,sdsnew(":"));
838 shared.plus = createObject(REDIS_STRING,sdsnew("+"));
839 shared.select0 = createStringObject("select 0\r\n",10);
840 shared.select1 = createStringObject("select 1\r\n",10);
841 shared.select2 = createStringObject("select 2\r\n",10);
842 shared.select3 = createStringObject("select 3\r\n",10);
843 shared.select4 = createStringObject("select 4\r\n",10);
844 shared.select5 = createStringObject("select 5\r\n",10);
845 shared.select6 = createStringObject("select 6\r\n",10);
846 shared.select7 = createStringObject("select 7\r\n",10);
847 shared.select8 = createStringObject("select 8\r\n",10);
848 shared.select9 = createStringObject("select 9\r\n",10);
849 shared.messagebulk = createStringObject("$7\r\nmessage\r\n",13);
850 shared.pmessagebulk = createStringObject("$8\r\npmessage\r\n",14);
851 shared.subscribebulk = createStringObject("$9\r\nsubscribe\r\n",15);
852 shared.unsubscribebulk = createStringObject("$11\r\nunsubscribe\r\n",18);
853 shared.psubscribebulk = createStringObject("$10\r\npsubscribe\r\n",17);
854 shared.punsubscribebulk = createStringObject("$12\r\npunsubscribe\r\n",19);
855 shared.del = createStringObject("DEL",3);
856 shared.rpop = createStringObject("RPOP",4);
857 shared.lpop = createStringObject("LPOP",4);
858 for (j = 0; j < REDIS_SHARED_INTEGERS; j++) {
859 shared.integers[j] = createObject(REDIS_STRING,(void*)(long)j);
860 shared.integers[j]->encoding = REDIS_ENCODING_INT;
861 }
862 for (j = 0; j < REDIS_SHARED_BULKHDR_LEN; j++) {
863 shared.mbulkhdr[j] = createObject(REDIS_STRING,
864 sdscatprintf(sdsempty(),"*%d\r\n",j));
865 shared.bulkhdr[j] = createObject(REDIS_STRING,
866 sdscatprintf(sdsempty(),"$%d\r\n",j));
867 }
868 }
869
870 void initServerConfig() {
871 server.arch_bits = (sizeof(long) == 8) ? 64 : 32;
872 server.port = REDIS_SERVERPORT;
873 server.bindaddr = NULL;
874 server.unixsocket = NULL;
875 server.unixsocketperm = 0;
876 server.ipfd = -1;
877 server.sofd = -1;
878 server.dbnum = REDIS_DEFAULT_DBNUM;
879 server.verbosity = REDIS_NOTICE;
880 server.maxidletime = REDIS_MAXIDLETIME;
881 server.client_max_querybuf_len = REDIS_MAX_QUERYBUF_LEN;
882 server.saveparams = NULL;
883 server.loading = 0;
884 server.logfile = NULL; /* NULL = log on standard output */
885 server.syslog_enabled = 0;
886 server.syslog_ident = zstrdup("redis");
887 server.syslog_facility = LOG_LOCAL0;
888 server.daemonize = 0;
889 server.aof_state = REDIS_AOF_OFF;
890 server.aof_fsync = AOF_FSYNC_EVERYSEC;
891 server.aof_no_fsync_on_rewrite = 0;
892 server.aof_rewrite_perc = REDIS_AOF_REWRITE_PERC;
893 server.aof_rewrite_min_size = REDIS_AOF_REWRITE_MIN_SIZE;
894 server.aof_rewrite_base_size = 0;
895 server.aof_rewrite_scheduled = 0;
896 server.aof_last_fsync = time(NULL);
897 server.aof_fd = -1;
898 server.aof_selected_db = -1; /* Make sure the first time will not match */
899 server.aof_flush_postponed_start = 0;
900 server.pidfile = zstrdup("/var/run/redis.pid");
901 server.rdb_filename = zstrdup("dump.rdb");
902 server.aof_filename = zstrdup("appendonly.aof");
903 server.requirepass = NULL;
904 server.rdb_compression = 1;
905 server.activerehashing = 1;
906 server.maxclients = REDIS_MAX_CLIENTS;
907 server.bpop_blocked_clients = 0;
908 server.maxmemory = 0;
909 server.maxmemory_policy = REDIS_MAXMEMORY_VOLATILE_LRU;
910 server.maxmemory_samples = 3;
911 server.hash_max_zipmap_entries = REDIS_HASH_MAX_ZIPMAP_ENTRIES;
912 server.hash_max_zipmap_value = REDIS_HASH_MAX_ZIPMAP_VALUE;
913 server.list_max_ziplist_entries = REDIS_LIST_MAX_ZIPLIST_ENTRIES;
914 server.list_max_ziplist_value = REDIS_LIST_MAX_ZIPLIST_VALUE;
915 server.set_max_intset_entries = REDIS_SET_MAX_INTSET_ENTRIES;
916 server.zset_max_ziplist_entries = REDIS_ZSET_MAX_ZIPLIST_ENTRIES;
917 server.zset_max_ziplist_value = REDIS_ZSET_MAX_ZIPLIST_VALUE;
918 server.shutdown_asap = 0;
919 server.repl_ping_slave_period = REDIS_REPL_PING_SLAVE_PERIOD;
920 server.repl_timeout = REDIS_REPL_TIMEOUT;
921 server.cluster_enabled = 0;
922 server.cluster.configfile = zstrdup("nodes.conf");
923 server.lua_caller = NULL;
924 server.lua_time_limit = REDIS_LUA_TIME_LIMIT;
925 server.lua_client = NULL;
926 server.lua_timedout = 0;
927
928 updateLRUClock();
929 resetServerSaveParams();
930
931 appendServerSaveParams(60*60,1); /* save after 1 hour and 1 change */
932 appendServerSaveParams(300,100); /* save after 5 minutes and 100 changes */
933 appendServerSaveParams(60,10000); /* save after 1 minute and 10000 changes */
934 /* Replication related */
935 server.masterauth = NULL;
936 server.masterhost = NULL;
937 server.masterport = 6379;
938 server.master = NULL;
939 server.repl_state = REDIS_REPL_NONE;
940 server.repl_syncio_timeout = REDIS_REPL_SYNCIO_TIMEOUT;
941 server.repl_serve_stale_data = 1;
942 server.repl_down_since = -1;
943
944 /* Client output buffer limits */
945 server.client_obuf_limits[REDIS_CLIENT_LIMIT_CLASS_NORMAL].hard_limit_bytes = 0;
946 server.client_obuf_limits[REDIS_CLIENT_LIMIT_CLASS_NORMAL].soft_limit_bytes = 0;
947 server.client_obuf_limits[REDIS_CLIENT_LIMIT_CLASS_NORMAL].soft_limit_seconds = 0;
948 server.client_obuf_limits[REDIS_CLIENT_LIMIT_CLASS_SLAVE].hard_limit_bytes = 1024*1024*256;
949 server.client_obuf_limits[REDIS_CLIENT_LIMIT_CLASS_SLAVE].soft_limit_bytes = 1024*1024*64;
950 server.client_obuf_limits[REDIS_CLIENT_LIMIT_CLASS_SLAVE].soft_limit_seconds = 60;
951 server.client_obuf_limits[REDIS_CLIENT_LIMIT_CLASS_PUBSUB].hard_limit_bytes = 1024*1024*32;
952 server.client_obuf_limits[REDIS_CLIENT_LIMIT_CLASS_PUBSUB].soft_limit_bytes = 1024*1024*8;
953 server.client_obuf_limits[REDIS_CLIENT_LIMIT_CLASS_PUBSUB].soft_limit_seconds = 60;
954
955 /* Double constants initialization */
956 R_Zero = 0.0;
957 R_PosInf = 1.0/R_Zero;
958 R_NegInf = -1.0/R_Zero;
959 R_Nan = R_Zero/R_Zero;
960
961 /* Command table -- we intiialize it here as it is part of the
962 * initial configuration, since command names may be changed via
963 * redis.conf using the rename-command directive. */
964 server.commands = dictCreate(&commandTableDictType,NULL);
965 populateCommandTable();
966 server.delCommand = lookupCommandByCString("del");
967 server.multiCommand = lookupCommandByCString("multi");
968 server.lpushCommand = lookupCommandByCString("lpush");
969
970 /* Slow log */
971 server.slowlog_log_slower_than = REDIS_SLOWLOG_LOG_SLOWER_THAN;
972 server.slowlog_max_len = REDIS_SLOWLOG_MAX_LEN;
973
974 /* Assert */
975 server.assert_failed = "<no assertion failed>";
976 server.assert_file = "<no file>";
977 server.assert_line = 0;
978 server.bug_report_start = 0;
979 }
980
981 /* This function will try to raise the max number of open files accordingly to
982 * the configured max number of clients. It will also account for 32 additional
983 * file descriptors as we need a few more for persistence, listening
984 * sockets, log files and so forth.
985 *
986 * If it will not be possible to set the limit accordingly to the configured
987 * max number of clients, the function will do the reverse setting
988 * server.maxclients to the value that we can actually handle. */
989 void adjustOpenFilesLimit(void) {
990 rlim_t maxfiles = server.maxclients+32;
991 struct rlimit limit;
992
993 if (maxfiles < 1024) maxfiles = 1024;
994 if (getrlimit(RLIMIT_NOFILE,&limit) == -1) {
995 redisLog(REDIS_WARNING,"Unable to obtain the current NOFILE limit (%s), assuming 1024 and setting the max clients configuration accordingly.",
996 strerror(errno));
997 server.maxclients = 1024-32;
998 } else {
999 rlim_t oldlimit = limit.rlim_cur;
1000
1001 /* Set the max number of files if the current limit is not enough
1002 * for our needs. */
1003 if (oldlimit < maxfiles) {
1004 limit.rlim_cur = maxfiles;
1005 limit.rlim_max = maxfiles;
1006 if (setrlimit(RLIMIT_NOFILE,&limit) == -1) {
1007 server.maxclients = oldlimit-32;
1008 redisLog(REDIS_WARNING,"Unable to set the max number of files limit to %d (%s), setting the max clients configuration to %d.",
1009 (int) maxfiles, strerror(errno), (int) server.maxclients);
1010 } else {
1011 redisLog(REDIS_NOTICE,"Max number of open files set to %d",
1012 (int) maxfiles);
1013 }
1014 }
1015 }
1016 }
1017
1018 void initServer() {
1019 int j;
1020
1021 signal(SIGHUP, SIG_IGN);
1022 signal(SIGPIPE, SIG_IGN);
1023 setupSignalHandlers();
1024
1025 if (server.syslog_enabled) {
1026 openlog(server.syslog_ident, LOG_PID | LOG_NDELAY | LOG_NOWAIT,
1027 server.syslog_facility);
1028 }
1029
1030 server.current_client = NULL;
1031 server.clients = listCreate();
1032 server.clients_to_close = listCreate();
1033 server.slaves = listCreate();
1034 server.monitors = listCreate();
1035 server.unblocked_clients = listCreate();
1036
1037 createSharedObjects();
1038 adjustOpenFilesLimit();
1039 server.el = aeCreateEventLoop(server.maxclients+1024);
1040 server.db = zmalloc(sizeof(redisDb)*server.dbnum);
1041
1042 if (server.port != 0) {
1043 server.ipfd = anetTcpServer(server.neterr,server.port,server.bindaddr);
1044 if (server.ipfd == ANET_ERR) {
1045 redisLog(REDIS_WARNING, "Opening port %d: %s",
1046 server.port, server.neterr);
1047 exit(1);
1048 }
1049 }
1050 if (server.unixsocket != NULL) {
1051 unlink(server.unixsocket); /* don't care if this fails */
1052 server.sofd = anetUnixServer(server.neterr,server.unixsocket,server.unixsocketperm);
1053 if (server.sofd == ANET_ERR) {
1054 redisLog(REDIS_WARNING, "Opening socket: %s", server.neterr);
1055 exit(1);
1056 }
1057 }
1058 if (server.ipfd < 0 && server.sofd < 0) {
1059 redisLog(REDIS_WARNING, "Configured to not listen anywhere, exiting.");
1060 exit(1);
1061 }
1062 for (j = 0; j < server.dbnum; j++) {
1063 server.db[j].dict = dictCreate(&dbDictType,NULL);
1064 server.db[j].expires = dictCreate(&keyptrDictType,NULL);
1065 server.db[j].blocking_keys = dictCreate(&keylistDictType,NULL);
1066 server.db[j].watched_keys = dictCreate(&keylistDictType,NULL);
1067 server.db[j].id = j;
1068 }
1069 server.pubsub_channels = dictCreate(&keylistDictType,NULL);
1070 server.pubsub_patterns = listCreate();
1071 listSetFreeMethod(server.pubsub_patterns,freePubsubPattern);
1072 listSetMatchMethod(server.pubsub_patterns,listMatchPubsubPattern);
1073 server.cronloops = 0;
1074 server.rdb_child_pid = -1;
1075 server.aof_child_pid = -1;
1076 server.aof_rewrite_buf = sdsempty();
1077 server.aof_buf = sdsempty();
1078 server.lastsave = time(NULL);
1079 server.dirty = 0;
1080 server.stat_numcommands = 0;
1081 server.stat_numconnections = 0;
1082 server.stat_expiredkeys = 0;
1083 server.stat_evictedkeys = 0;
1084 server.stat_starttime = time(NULL);
1085 server.stat_keyspace_misses = 0;
1086 server.stat_keyspace_hits = 0;
1087 server.stat_peak_memory = 0;
1088 server.stat_fork_time = 0;
1089 server.stat_rejected_conn = 0;
1090 server.unixtime = time(NULL);
1091 aeCreateTimeEvent(server.el, 1, serverCron, NULL, NULL);
1092 if (server.ipfd > 0 && aeCreateFileEvent(server.el,server.ipfd,AE_READABLE,
1093 acceptTcpHandler,NULL) == AE_ERR) oom("creating file event");
1094 if (server.sofd > 0 && aeCreateFileEvent(server.el,server.sofd,AE_READABLE,
1095 acceptUnixHandler,NULL) == AE_ERR) oom("creating file event");
1096
1097 if (server.aof_state == REDIS_AOF_ON) {
1098 server.aof_fd = open(server.aof_filename,
1099 O_WRONLY|O_APPEND|O_CREAT,0644);
1100 if (server.aof_fd == -1) {
1101 redisLog(REDIS_WARNING, "Can't open the append-only file: %s",
1102 strerror(errno));
1103 exit(1);
1104 }
1105 }
1106
1107 /* 32 bit instances are limited to 4GB of address space, so if there is
1108 * no explicit limit in the user provided configuration we set a limit
1109 * at 3.5GB using maxmemory with 'noeviction' policy'. This saves
1110 * useless crashes of the Redis instance. */
1111 if (server.arch_bits == 32 && server.maxmemory == 0) {
1112 redisLog(REDIS_WARNING,"Warning: 32 bit instance detected but no memory limit set. Setting 3.5 GB maxmemory limit with 'noeviction' policy now.");
1113 server.maxmemory = 3584LL*(1024*1024); /* 3584 MB = 3.5 GB */
1114 server.maxmemory_policy = REDIS_MAXMEMORY_NO_EVICTION;
1115 }
1116
1117 if (server.cluster_enabled) clusterInit();
1118 scriptingInit();
1119 slowlogInit();
1120 bioInit();
1121 }
1122
1123 /* Populates the Redis Command Table starting from the hard coded list
1124 * we have on top of redis.c file. */
1125 void populateCommandTable(void) {
1126 int j;
1127 int numcommands = sizeof(redisCommandTable)/sizeof(struct redisCommand);
1128
1129 for (j = 0; j < numcommands; j++) {
1130 struct redisCommand *c = redisCommandTable+j;
1131 char *f = c->sflags;
1132 int retval;
1133
1134 while(*f != '\0') {
1135 switch(*f) {
1136 case 'w': c->flags |= REDIS_CMD_WRITE; break;
1137 case 'r': c->flags |= REDIS_CMD_READONLY; break;
1138 case 'm': c->flags |= REDIS_CMD_DENYOOM; break;
1139 case 'a': c->flags |= REDIS_CMD_ADMIN; break;
1140 case 'p': c->flags |= REDIS_CMD_PUBSUB; break;
1141 case 'f': c->flags |= REDIS_CMD_FORCE_REPLICATION; break;
1142 case 's': c->flags |= REDIS_CMD_NOSCRIPT; break;
1143 case 'R': c->flags |= REDIS_CMD_RANDOM; break;
1144 case 'S': c->flags |= REDIS_CMD_SORT_FOR_SCRIPT; break;
1145 default: redisPanic("Unsupported command flag"); break;
1146 }
1147 f++;
1148 }
1149
1150 retval = dictAdd(server.commands, sdsnew(c->name), c);
1151 assert(retval == DICT_OK);
1152 }
1153 }
1154
1155 void resetCommandTableStats(void) {
1156 int numcommands = sizeof(redisCommandTable)/sizeof(struct redisCommand);
1157 int j;
1158
1159 for (j = 0; j < numcommands; j++) {
1160 struct redisCommand *c = redisCommandTable+j;
1161
1162 c->microseconds = 0;
1163 c->calls = 0;
1164 }
1165 }
1166
1167 /* ========================== Redis OP Array API ============================ */
1168
1169 void redisOpArrayInit(redisOpArray *oa) {
1170 oa->ops = NULL;
1171 oa->numops = 0;
1172 }
1173
1174 int redisOpArrayAppend(redisOpArray *oa, struct redisCommand *cmd, int dbid,
1175 robj **argv, int argc, int target)
1176 {
1177 redisOp *op;
1178
1179 oa->ops = zrealloc(oa->ops,sizeof(redisOp)*(oa->numops+1));
1180 op = oa->ops+oa->numops;
1181 op->cmd = cmd;
1182 op->dbid = dbid;
1183 op->argv = argv;
1184 op->argc = argc;
1185 op->target = target;
1186 oa->numops++;
1187 return oa->numops;
1188 }
1189
1190 void redisOpArrayFree(redisOpArray *oa) {
1191 while(oa->numops) {
1192 int j;
1193 redisOp *op;
1194
1195 oa->numops--;
1196 op = oa->ops+oa->numops;
1197 for (j = 0; j < op->argc; j++)
1198 decrRefCount(op->argv[j]);
1199 zfree(op->argv);
1200 }
1201 zfree(oa->ops);
1202 }
1203
1204 /* ====================== Commands lookup and execution ===================== */
1205
1206 struct redisCommand *lookupCommand(sds name) {
1207 return dictFetchValue(server.commands, name);
1208 }
1209
1210 struct redisCommand *lookupCommandByCString(char *s) {
1211 struct redisCommand *cmd;
1212 sds name = sdsnew(s);
1213
1214 cmd = dictFetchValue(server.commands, name);
1215 sdsfree(name);
1216 return cmd;
1217 }
1218
1219 /* Propagate the specified command (in the context of the specified database id)
1220 * to AOF, Slaves and Monitors.
1221 *
1222 * flags are an xor between:
1223 * + REDIS_PROPAGATE_NONE (no propagation of command at all)
1224 * + REDIS_PROPAGATE_AOF (propagate into the AOF file if is enabled)
1225 * + REDIS_PROPAGATE_REPL (propagate into the replication link)
1226 */
1227 void propagate(struct redisCommand *cmd, int dbid, robj **argv, int argc,
1228 int flags)
1229 {
1230 if (server.aof_state != REDIS_AOF_OFF && flags & REDIS_PROPAGATE_AOF)
1231 feedAppendOnlyFile(cmd,dbid,argv,argc);
1232 if (flags & REDIS_PROPAGATE_REPL && listLength(server.slaves))
1233 replicationFeedSlaves(server.slaves,dbid,argv,argc);
1234 }
1235
1236 /* Used inside commands to schedule the propagation of additional commands
1237 * after the current command is propagated to AOF / Replication. */
1238 void alsoPropagate(struct redisCommand *cmd, int dbid, robj **argv, int argc,
1239 int target)
1240 {
1241 redisOpArrayAppend(&server.also_propagate,cmd,dbid,argv,argc,target);
1242 }
1243
1244 /* Call() is the core of Redis execution of a command */
1245 void call(redisClient *c, int flags) {
1246 long long dirty, start = ustime(), duration;
1247
1248 /* Sent the command to clients in MONITOR mode, only if the commands are
1249 * not geneated from reading an AOF. */
1250 if (listLength(server.monitors) && !server.loading)
1251 replicationFeedMonitors(server.monitors,c->db->id,c->argv,c->argc);
1252
1253 /* Call the command. */
1254 redisOpArrayInit(&server.also_propagate);
1255 dirty = server.dirty;
1256 c->cmd->proc(c);
1257 dirty = server.dirty-dirty;
1258 duration = ustime()-start;
1259
1260 /* When EVAL is called loading the AOF we don't want commands called
1261 * from Lua to go into the slowlog or to populate statistics. */
1262 if (server.loading && c->flags & REDIS_LUA_CLIENT)
1263 flags &= ~(REDIS_CALL_SLOWLOG | REDIS_CALL_STATS);
1264
1265 /* Log the command into the Slow log if needed, and populate the
1266 * per-command statistics that we show in INFO commandstats. */
1267 if (flags & REDIS_CALL_SLOWLOG)
1268 slowlogPushEntryIfNeeded(c->argv,c->argc,duration);
1269 if (flags & REDIS_CALL_STATS) {
1270 c->cmd->microseconds += duration;
1271 c->cmd->calls++;
1272 }
1273
1274 /* Propagate the command into the AOF and replication link */
1275 if (flags & REDIS_CALL_PROPAGATE) {
1276 int flags = REDIS_PROPAGATE_NONE;
1277
1278 if (c->cmd->flags & REDIS_CMD_FORCE_REPLICATION)
1279 flags |= REDIS_PROPAGATE_REPL;
1280 if (dirty)
1281 flags |= (REDIS_PROPAGATE_REPL | REDIS_PROPAGATE_AOF);
1282 if (flags != REDIS_PROPAGATE_NONE)
1283 propagate(c->cmd,c->db->id,c->argv,c->argc,flags);
1284 }
1285 /* Commands such as LPUSH or BRPOPLPUSH may propagate an additional
1286 * PUSH command. */
1287 if (server.also_propagate.numops) {
1288 int j;
1289 redisOp *rop;
1290
1291 for (j = 0; j < server.also_propagate.numops; j++) {
1292 rop = &server.also_propagate.ops[j];
1293 propagate(rop->cmd, rop->dbid, rop->argv, rop->argc, rop->target);
1294 }
1295 redisOpArrayFree(&server.also_propagate);
1296 }
1297 server.stat_numcommands++;
1298 }
1299
1300 /* If this function gets called we already read a whole
1301 * command, argments are in the client argv/argc fields.
1302 * processCommand() execute the command or prepare the
1303 * server for a bulk read from the client.
1304 *
1305 * If 1 is returned the client is still alive and valid and
1306 * and other operations can be performed by the caller. Otherwise
1307 * if 0 is returned the client was destroied (i.e. after QUIT). */
1308 int processCommand(redisClient *c) {
1309 /* The QUIT command is handled separately. Normal command procs will
1310 * go through checking for replication and QUIT will cause trouble
1311 * when FORCE_REPLICATION is enabled and would be implemented in
1312 * a regular command proc. */
1313 if (!strcasecmp(c->argv[0]->ptr,"quit")) {
1314 addReply(c,shared.ok);
1315 c->flags |= REDIS_CLOSE_AFTER_REPLY;
1316 return REDIS_ERR;
1317 }
1318
1319 /* Now lookup the command and check ASAP about trivial error conditions
1320 * such as wrong arity, bad command name and so forth. */
1321 c->cmd = c->lastcmd = lookupCommand(c->argv[0]->ptr);
1322 if (!c->cmd) {
1323 addReplyErrorFormat(c,"unknown command '%s'",
1324 (char*)c->argv[0]->ptr);
1325 return REDIS_OK;
1326 } else if ((c->cmd->arity > 0 && c->cmd->arity != c->argc) ||
1327 (c->argc < -c->cmd->arity)) {
1328 addReplyErrorFormat(c,"wrong number of arguments for '%s' command",
1329 c->cmd->name);
1330 return REDIS_OK;
1331 }
1332
1333 /* Check if the user is authenticated */
1334 if (server.requirepass && !c->authenticated && c->cmd->proc != authCommand)
1335 {
1336 addReplyError(c,"operation not permitted");
1337 return REDIS_OK;
1338 }
1339
1340 /* If cluster is enabled, redirect here */
1341 if (server.cluster_enabled &&
1342 !(c->cmd->getkeys_proc == NULL && c->cmd->firstkey == 0)) {
1343 int hashslot;
1344
1345 if (server.cluster.state != REDIS_CLUSTER_OK) {
1346 addReplyError(c,"The cluster is down. Check with CLUSTER INFO for more information");
1347 return REDIS_OK;
1348 } else {
1349 int ask;
1350 clusterNode *n = getNodeByQuery(c,c->cmd,c->argv,c->argc,&hashslot,&ask);
1351 if (n == NULL) {
1352 addReplyError(c,"Multi keys request invalid in cluster");
1353 return REDIS_OK;
1354 } else if (n != server.cluster.myself) {
1355 addReplySds(c,sdscatprintf(sdsempty(),
1356 "-%s %d %s:%d\r\n", ask ? "ASK" : "MOVED",
1357 hashslot,n->ip,n->port));
1358 return REDIS_OK;
1359 }
1360 }
1361 }
1362
1363 /* Handle the maxmemory directive.
1364 *
1365 * First we try to free some memory if possible (if there are volatile
1366 * keys in the dataset). If there are not the only thing we can do
1367 * is returning an error. */
1368 if (server.maxmemory) {
1369 int retval = freeMemoryIfNeeded();
1370 if ((c->cmd->flags & REDIS_CMD_DENYOOM) && retval == REDIS_ERR) {
1371 addReplyError(c,
1372 "command not allowed when used memory > 'maxmemory'");
1373 return REDIS_OK;
1374 }
1375 }
1376
1377 /* Only allow SUBSCRIBE and UNSUBSCRIBE in the context of Pub/Sub */
1378 if ((dictSize(c->pubsub_channels) > 0 || listLength(c->pubsub_patterns) > 0)
1379 &&
1380 c->cmd->proc != subscribeCommand &&
1381 c->cmd->proc != unsubscribeCommand &&
1382 c->cmd->proc != psubscribeCommand &&
1383 c->cmd->proc != punsubscribeCommand) {
1384 addReplyError(c,"only (P)SUBSCRIBE / (P)UNSUBSCRIBE / QUIT allowed in this context");
1385 return REDIS_OK;
1386 }
1387
1388 /* Only allow INFO and SLAVEOF when slave-serve-stale-data is no and
1389 * we are a slave with a broken link with master. */
1390 if (server.masterhost && server.repl_state != REDIS_REPL_CONNECTED &&
1391 server.repl_serve_stale_data == 0 &&
1392 c->cmd->proc != infoCommand && c->cmd->proc != slaveofCommand)
1393 {
1394 addReplyError(c,
1395 "link with MASTER is down and slave-serve-stale-data is set to no");
1396 return REDIS_OK;
1397 }
1398
1399 /* Loading DB? Return an error if the command is not INFO */
1400 if (server.loading && c->cmd->proc != infoCommand) {
1401 addReply(c, shared.loadingerr);
1402 return REDIS_OK;
1403 }
1404
1405 /* Lua script too slow? Only allow SHUTDOWN NOSAVE and SCRIPT KILL. */
1406 if (server.lua_timedout &&
1407 !(c->cmd->proc != shutdownCommand &&
1408 c->argc == 2 &&
1409 tolower(((char*)c->argv[1]->ptr)[0]) == 'n') &&
1410 !(c->cmd->proc == scriptCommand &&
1411 c->argc == 2 &&
1412 tolower(((char*)c->argv[1]->ptr)[0]) == 'k'))
1413 {
1414 addReply(c, shared.slowscripterr);
1415 return REDIS_OK;
1416 }
1417
1418 /* Exec the command */
1419 if (c->flags & REDIS_MULTI &&
1420 c->cmd->proc != execCommand && c->cmd->proc != discardCommand &&
1421 c->cmd->proc != multiCommand && c->cmd->proc != watchCommand)
1422 {
1423 queueMultiCommand(c);
1424 addReply(c,shared.queued);
1425 } else {
1426 call(c,REDIS_CALL_FULL);
1427 }
1428 return REDIS_OK;
1429 }
1430
1431 /*================================== Shutdown =============================== */
1432
1433 int prepareForShutdown(int flags) {
1434 int save = flags & REDIS_SHUTDOWN_SAVE;
1435 int nosave = flags & REDIS_SHUTDOWN_NOSAVE;
1436
1437 redisLog(REDIS_WARNING,"User requested shutdown...");
1438 /* Kill the saving child if there is a background saving in progress.
1439 We want to avoid race conditions, for instance our saving child may
1440 overwrite the synchronous saving did by SHUTDOWN. */
1441 if (server.rdb_child_pid != -1) {
1442 redisLog(REDIS_WARNING,"There is a child saving an .rdb. Killing it!");
1443 kill(server.rdb_child_pid,SIGKILL);
1444 rdbRemoveTempFile(server.rdb_child_pid);
1445 }
1446 if (server.aof_state != REDIS_AOF_OFF) {
1447 /* Kill the AOF saving child as the AOF we already have may be longer
1448 * but contains the full dataset anyway. */
1449 if (server.aof_child_pid != -1) {
1450 redisLog(REDIS_WARNING,
1451 "There is a child rewriting the AOF. Killing it!");
1452 kill(server.aof_child_pid,SIGKILL);
1453 }
1454 /* Append only file: fsync() the AOF and exit */
1455 redisLog(REDIS_NOTICE,"Calling fsync() on the AOF file.");
1456 aof_fsync(server.aof_fd);
1457 }
1458 if ((server.saveparamslen > 0 && !nosave) || save) {
1459 redisLog(REDIS_NOTICE,"Saving the final RDB snapshot before exiting.");
1460 /* Snapshotting. Perform a SYNC SAVE and exit */
1461 if (rdbSave(server.rdb_filename) != REDIS_OK) {
1462 /* Ooops.. error saving! The best we can do is to continue
1463 * operating. Note that if there was a background saving process,
1464 * in the next cron() Redis will be notified that the background
1465 * saving aborted, handling special stuff like slaves pending for
1466 * synchronization... */
1467 redisLog(REDIS_WARNING,"Error trying to save the DB, can't exit.");
1468 return REDIS_ERR;
1469 }
1470 }
1471 if (server.daemonize) {
1472 redisLog(REDIS_NOTICE,"Removing the pid file.");
1473 unlink(server.pidfile);
1474 }
1475 /* Close the listening sockets. Apparently this allows faster restarts. */
1476 if (server.ipfd != -1) close(server.ipfd);
1477 if (server.sofd != -1) close(server.sofd);
1478 if (server.unixsocket) {
1479 redisLog(REDIS_NOTICE,"Removing the unix socket file.");
1480 unlink(server.unixsocket); /* don't care if this fails */
1481 }
1482
1483 redisLog(REDIS_WARNING,"Redis is now ready to exit, bye bye...");
1484 return REDIS_OK;
1485 }
1486
1487 /*================================== Commands =============================== */
1488
1489 void authCommand(redisClient *c) {
1490 if (!server.requirepass) {
1491 addReplyError(c,"Client sent AUTH, but no password is set");
1492 } else if (!strcmp(c->argv[1]->ptr, server.requirepass)) {
1493 c->authenticated = 1;
1494 addReply(c,shared.ok);
1495 } else {
1496 c->authenticated = 0;
1497 addReplyError(c,"invalid password");
1498 }
1499 }
1500
1501 void pingCommand(redisClient *c) {
1502 addReply(c,shared.pong);
1503 }
1504
1505 void echoCommand(redisClient *c) {
1506 addReplyBulk(c,c->argv[1]);
1507 }
1508
1509 void timeCommand(redisClient *c) {
1510 struct timeval tv;
1511
1512 /* gettimeofday() can only fail if &tv is a bad addresss so we
1513 * don't check for errors. */
1514 gettimeofday(&tv,NULL);
1515 addReplyMultiBulkLen(c,2);
1516 addReplyBulkLongLong(c,tv.tv_sec);
1517 addReplyBulkLongLong(c,tv.tv_usec);
1518 }
1519
1520 /* Convert an amount of bytes into a human readable string in the form
1521 * of 100B, 2G, 100M, 4K, and so forth. */
1522 void bytesToHuman(char *s, unsigned long long n) {
1523 double d;
1524
1525 if (n < 1024) {
1526 /* Bytes */
1527 sprintf(s,"%lluB",n);
1528 return;
1529 } else if (n < (1024*1024)) {
1530 d = (double)n/(1024);
1531 sprintf(s,"%.2fK",d);
1532 } else if (n < (1024LL*1024*1024)) {
1533 d = (double)n/(1024*1024);
1534 sprintf(s,"%.2fM",d);
1535 } else if (n < (1024LL*1024*1024*1024)) {
1536 d = (double)n/(1024LL*1024*1024);
1537 sprintf(s,"%.2fG",d);
1538 }
1539 }
1540
1541 /* Create the string returned by the INFO command. This is decoupled
1542 * by the INFO command itself as we need to report the same information
1543 * on memory corruption problems. */
1544 sds genRedisInfoString(char *section) {
1545 sds info = sdsempty();
1546 time_t uptime = time(NULL)-server.stat_starttime;
1547 int j, numcommands;
1548 struct rusage self_ru, c_ru;
1549 unsigned long lol, bib;
1550 int allsections = 0, defsections = 0;
1551 int sections = 0;
1552
1553 if (section) {
1554 allsections = strcasecmp(section,"all") == 0;
1555 defsections = strcasecmp(section,"default") == 0;
1556 }
1557
1558 getrusage(RUSAGE_SELF, &self_ru);
1559 getrusage(RUSAGE_CHILDREN, &c_ru);
1560 getClientsMaxBuffers(&lol,&bib);
1561
1562 /* Server */
1563 if (allsections || defsections || !strcasecmp(section,"server")) {
1564 if (sections++) info = sdscat(info,"\r\n");
1565 info = sdscatprintf(info,
1566 "# Server\r\n"
1567 "redis_version:%s\r\n"
1568 "redis_git_sha1:%s\r\n"
1569 "redis_git_dirty:%d\r\n"
1570 "arch_bits:%d\r\n"
1571 "multiplexing_api:%s\r\n"
1572 "gcc_version:%d.%d.%d\r\n"
1573 "process_id:%ld\r\n"
1574 "tcp_port:%d\r\n"
1575 "uptime_in_seconds:%ld\r\n"
1576 "uptime_in_days:%ld\r\n"
1577 "lru_clock:%ld\r\n",
1578 REDIS_VERSION,
1579 redisGitSHA1(),
1580 strtol(redisGitDirty(),NULL,10) > 0,
1581 server.arch_bits,
1582 aeGetApiName(),
1583 #ifdef __GNUC__
1584 __GNUC__,__GNUC_MINOR__,__GNUC_PATCHLEVEL__,
1585 #else
1586 0,0,0,
1587 #endif
1588 (long) getpid(),
1589 server.port,
1590 uptime,
1591 uptime/(3600*24),
1592 (unsigned long) server.lruclock);
1593 }
1594
1595 /* Clients */
1596 if (allsections || defsections || !strcasecmp(section,"clients")) {
1597 if (sections++) info = sdscat(info,"\r\n");
1598 info = sdscatprintf(info,
1599 "# Clients\r\n"
1600 "connected_clients:%lu\r\n"
1601 "client_longest_output_list:%lu\r\n"
1602 "client_biggest_input_buf:%lu\r\n"
1603 "blocked_clients:%d\r\n",
1604 listLength(server.clients)-listLength(server.slaves),
1605 lol, bib,
1606 server.bpop_blocked_clients);
1607 }
1608
1609 /* Memory */
1610 if (allsections || defsections || !strcasecmp(section,"memory")) {
1611 char hmem[64];
1612 char peak_hmem[64];
1613
1614 bytesToHuman(hmem,zmalloc_used_memory());
1615 bytesToHuman(peak_hmem,server.stat_peak_memory);
1616 if (sections++) info = sdscat(info,"\r\n");
1617 info = sdscatprintf(info,
1618 "# Memory\r\n"
1619 "used_memory:%zu\r\n"
1620 "used_memory_human:%s\r\n"
1621 "used_memory_rss:%zu\r\n"
1622 "used_memory_peak:%zu\r\n"
1623 "used_memory_peak_human:%s\r\n"
1624 "used_memory_lua:%lld\r\n"
1625 "mem_fragmentation_ratio:%.2f\r\n"
1626 "mem_allocator:%s\r\n",
1627 zmalloc_used_memory(),
1628 hmem,
1629 zmalloc_get_rss(),
1630 server.stat_peak_memory,
1631 peak_hmem,
1632 ((long long)lua_gc(server.lua,LUA_GCCOUNT,0))*1024LL,
1633 zmalloc_get_fragmentation_ratio(),
1634 ZMALLOC_LIB
1635 );
1636 }
1637
1638 /* Persistence */
1639 if (allsections || defsections || !strcasecmp(section,"persistence")) {
1640 if (sections++) info = sdscat(info,"\r\n");
1641 info = sdscatprintf(info,
1642 "# Persistence\r\n"
1643 "loading:%d\r\n"
1644 "aof_enabled:%d\r\n"
1645 "changes_since_last_save:%lld\r\n"
1646 "bgsave_in_progress:%d\r\n"
1647 "last_save_time:%ld\r\n"
1648 "bgrewriteaof_in_progress:%d\r\n",
1649 server.loading,
1650 server.aof_state != REDIS_AOF_OFF,
1651 server.dirty,
1652 server.rdb_child_pid != -1,
1653 server.lastsave,
1654 server.aof_child_pid != -1);
1655
1656 if (server.aof_state != REDIS_AOF_OFF) {
1657 info = sdscatprintf(info,
1658 "aof_current_size:%lld\r\n"
1659 "aof_base_size:%lld\r\n"
1660 "aof_pending_rewrite:%d\r\n"
1661 "aof_buffer_length:%zu\r\n"
1662 "aof_pending_bio_fsync:%llu\r\n",
1663 (long long) server.aof_current_size,
1664 (long long) server.aof_rewrite_base_size,
1665 server.aof_rewrite_scheduled,
1666 sdslen(server.aof_buf),
1667 bioPendingJobsOfType(REDIS_BIO_AOF_FSYNC));
1668 }
1669
1670 if (server.loading) {
1671 double perc;
1672 time_t eta, elapsed;
1673 off_t remaining_bytes = server.loading_total_bytes-
1674 server.loading_loaded_bytes;
1675
1676 perc = ((double)server.loading_loaded_bytes /
1677 server.loading_total_bytes) * 100;
1678
1679 elapsed = time(NULL)-server.loading_start_time;
1680 if (elapsed == 0) {
1681 eta = 1; /* A fake 1 second figure if we don't have
1682 enough info */
1683 } else {
1684 eta = (elapsed*remaining_bytes)/server.loading_loaded_bytes;
1685 }
1686
1687 info = sdscatprintf(info,
1688 "loading_start_time:%ld\r\n"
1689 "loading_total_bytes:%llu\r\n"
1690 "loading_loaded_bytes:%llu\r\n"
1691 "loading_loaded_perc:%.2f\r\n"
1692 "loading_eta_seconds:%ld\r\n"
1693 ,(unsigned long) server.loading_start_time,
1694 (unsigned long long) server.loading_total_bytes,
1695 (unsigned long long) server.loading_loaded_bytes,
1696 perc,
1697 eta
1698 );
1699 }
1700 }
1701
1702 /* Stats */
1703 if (allsections || defsections || !strcasecmp(section,"stats")) {
1704 if (sections++) info = sdscat(info,"\r\n");
1705 info = sdscatprintf(info,
1706 "# Stats\r\n"
1707 "total_connections_received:%lld\r\n"
1708 "total_commands_processed:%lld\r\n"
1709 "rejected_connections:%lld\r\n"
1710 "expired_keys:%lld\r\n"
1711 "evicted_keys:%lld\r\n"
1712 "keyspace_hits:%lld\r\n"
1713 "keyspace_misses:%lld\r\n"
1714 "pubsub_channels:%ld\r\n"
1715 "pubsub_patterns:%lu\r\n"
1716 "latest_fork_usec:%lld\r\n",
1717 server.stat_numconnections,
1718 server.stat_numcommands,
1719 server.stat_rejected_conn,
1720 server.stat_expiredkeys,
1721 server.stat_evictedkeys,
1722 server.stat_keyspace_hits,
1723 server.stat_keyspace_misses,
1724 dictSize(server.pubsub_channels),
1725 listLength(server.pubsub_patterns),
1726 server.stat_fork_time);
1727 }
1728
1729 /* Replication */
1730 if (allsections || defsections || !strcasecmp(section,"replication")) {
1731 if (sections++) info = sdscat(info,"\r\n");
1732 info = sdscatprintf(info,
1733 "# Replication\r\n"
1734 "role:%s\r\n",
1735 server.masterhost == NULL ? "master" : "slave");
1736 if (server.masterhost) {
1737 info = sdscatprintf(info,
1738 "master_host:%s\r\n"
1739 "master_port:%d\r\n"
1740 "master_link_status:%s\r\n"
1741 "master_last_io_seconds_ago:%d\r\n"
1742 "master_sync_in_progress:%d\r\n"
1743 ,server.masterhost,
1744 server.masterport,
1745 (server.repl_state == REDIS_REPL_CONNECTED) ?
1746 "up" : "down",
1747 server.master ?
1748 ((int)(time(NULL)-server.master->lastinteraction)) : -1,
1749 server.repl_state == REDIS_REPL_TRANSFER
1750 );
1751
1752 if (server.repl_state == REDIS_REPL_TRANSFER) {
1753 info = sdscatprintf(info,
1754 "master_sync_left_bytes:%ld\r\n"
1755 "master_sync_last_io_seconds_ago:%d\r\n"
1756 ,(long)server.repl_transfer_left,
1757 (int)(time(NULL)-server.repl_transfer_lastio)
1758 );
1759 }
1760
1761 if (server.repl_state != REDIS_REPL_CONNECTED) {
1762 info = sdscatprintf(info,
1763 "master_link_down_since_seconds:%ld\r\n",
1764 (long)time(NULL)-server.repl_down_since);
1765 }
1766 }
1767 info = sdscatprintf(info,
1768 "connected_slaves:%lu\r\n",
1769 listLength(server.slaves));
1770 if (listLength(server.slaves)) {
1771 int slaveid = 0;
1772 listNode *ln;
1773 listIter li;
1774
1775 listRewind(server.slaves,&li);
1776 while((ln = listNext(&li))) {
1777 redisClient *slave = listNodeValue(ln);
1778 char *state = NULL;
1779 char ip[32];
1780 int port;
1781
1782 if (anetPeerToString(slave->fd,ip,&port) == -1) continue;
1783 switch(slave->replstate) {
1784 case REDIS_REPL_WAIT_BGSAVE_START:
1785 case REDIS_REPL_WAIT_BGSAVE_END:
1786 state = "wait_bgsave";
1787 break;
1788 case REDIS_REPL_SEND_BULK:
1789 state = "send_bulk";
1790 break;
1791 case REDIS_REPL_ONLINE:
1792 state = "online";
1793 break;
1794 }
1795 if (state == NULL) continue;
1796 info = sdscatprintf(info,"slave%d:%s,%d,%s\r\n",
1797 slaveid,ip,port,state);
1798 slaveid++;
1799 }
1800 }
1801 }
1802
1803 /* CPU */
1804 if (allsections || defsections || !strcasecmp(section,"cpu")) {
1805 if (sections++) info = sdscat(info,"\r\n");
1806 info = sdscatprintf(info,
1807 "# CPU\r\n"
1808 "used_cpu_sys:%.2f\r\n"
1809 "used_cpu_user:%.2f\r\n"
1810 "used_cpu_sys_children:%.2f\r\n"
1811 "used_cpu_user_children:%.2f\r\n",
1812 (float)self_ru.ru_stime.tv_sec+(float)self_ru.ru_stime.tv_usec/1000000,
1813 (float)self_ru.ru_utime.tv_sec+(float)self_ru.ru_utime.tv_usec/1000000,
1814 (float)c_ru.ru_stime.tv_sec+(float)c_ru.ru_stime.tv_usec/1000000,
1815 (float)c_ru.ru_utime.tv_sec+(float)c_ru.ru_utime.tv_usec/1000000);
1816 }
1817
1818 /* cmdtime */
1819 if (allsections || !strcasecmp(section,"commandstats")) {
1820 if (sections++) info = sdscat(info,"\r\n");
1821 info = sdscatprintf(info, "# Commandstats\r\n");
1822 numcommands = sizeof(redisCommandTable)/sizeof(struct redisCommand);
1823 for (j = 0; j < numcommands; j++) {
1824 struct redisCommand *c = redisCommandTable+j;
1825
1826 if (!c->calls) continue;
1827 info = sdscatprintf(info,
1828 "cmdstat_%s:calls=%lld,usec=%lld,usec_per_call=%.2f\r\n",
1829 c->name, c->calls, c->microseconds,
1830 (c->calls == 0) ? 0 : ((float)c->microseconds/c->calls));
1831 }
1832 }
1833
1834 /* Clusetr */
1835 if (allsections || defsections || !strcasecmp(section,"cluster")) {
1836 if (sections++) info = sdscat(info,"\r\n");
1837 info = sdscatprintf(info,
1838 "# Cluster\r\n"
1839 "cluster_enabled:%d\r\n",
1840 server.cluster_enabled);
1841 }
1842
1843 /* Key space */
1844 if (allsections || defsections || !strcasecmp(section,"keyspace")) {
1845 if (sections++) info = sdscat(info,"\r\n");
1846 info = sdscatprintf(info, "# Keyspace\r\n");
1847 for (j = 0; j < server.dbnum; j++) {
1848 long long keys, vkeys;
1849
1850 keys = dictSize(server.db[j].dict);
1851 vkeys = dictSize(server.db[j].expires);
1852 if (keys || vkeys) {
1853 info = sdscatprintf(info, "db%d:keys=%lld,expires=%lld\r\n",
1854 j, keys, vkeys);
1855 }
1856 }
1857 }
1858 return info;
1859 }
1860
1861 void infoCommand(redisClient *c) {
1862 char *section = c->argc == 2 ? c->argv[1]->ptr : "default";
1863
1864 if (c->argc > 2) {
1865 addReply(c,shared.syntaxerr);
1866 return;
1867 }
1868 sds info = genRedisInfoString(section);
1869 addReplySds(c,sdscatprintf(sdsempty(),"$%lu\r\n",
1870 (unsigned long)sdslen(info)));
1871 addReplySds(c,info);
1872 addReply(c,shared.crlf);
1873 }
1874
1875 void monitorCommand(redisClient *c) {
1876 /* ignore MONITOR if aleady slave or in monitor mode */
1877 if (c->flags & REDIS_SLAVE) return;
1878
1879 c->flags |= (REDIS_SLAVE|REDIS_MONITOR);
1880 c->slaveseldb = 0;
1881 listAddNodeTail(server.monitors,c);
1882 addReply(c,shared.ok);
1883 }
1884
1885 /* ============================ Maxmemory directive ======================== */
1886
1887 /* This function gets called when 'maxmemory' is set on the config file to limit
1888 * the max memory used by the server, before processing a command.
1889 *
1890 * The goal of the function is to free enough memory to keep Redis under the
1891 * configured memory limit.
1892 *
1893 * The function starts calculating how many bytes should be freed to keep
1894 * Redis under the limit, and enters a loop selecting the best keys to
1895 * evict accordingly to the configured policy.
1896 *
1897 * If all the bytes needed to return back under the limit were freed the
1898 * function returns REDIS_OK, otherwise REDIS_ERR is returned, and the caller
1899 * should block the execution of commands that will result in more memory
1900 * used by the server.
1901 */
1902 int freeMemoryIfNeeded(void) {
1903 size_t mem_used, mem_tofree, mem_freed;
1904 int slaves = listLength(server.slaves);
1905
1906 /* Remove the size of slaves output buffers and AOF buffer from the
1907 * count of used memory. */
1908 mem_used = zmalloc_used_memory();
1909 if (slaves) {
1910 listIter li;
1911 listNode *ln;
1912
1913 listRewind(server.slaves,&li);
1914 while((ln = listNext(&li))) {
1915 redisClient *slave = listNodeValue(ln);
1916 unsigned long obuf_bytes = getClientOutputBufferMemoryUsage(slave);
1917 if (obuf_bytes > mem_used)
1918 mem_used = 0;
1919 else
1920 mem_used -= obuf_bytes;
1921 }
1922 }
1923 if (server.aof_state != REDIS_AOF_OFF) {
1924 mem_used -= sdslen(server.aof_buf);
1925 mem_used -= sdslen(server.aof_rewrite_buf);
1926 }
1927
1928 /* Check if we are over the memory limit. */
1929 if (mem_used <= server.maxmemory) return REDIS_OK;
1930
1931 if (server.maxmemory_policy == REDIS_MAXMEMORY_NO_EVICTION)
1932 return REDIS_ERR; /* We need to free memory, but policy forbids. */
1933
1934 /* Compute how much memory we need to free. */
1935 mem_tofree = mem_used - server.maxmemory;
1936 mem_freed = 0;
1937 while (mem_freed < mem_tofree) {
1938 int j, k, keys_freed = 0;
1939
1940 for (j = 0; j < server.dbnum; j++) {
1941 long bestval = 0; /* just to prevent warning */
1942 sds bestkey = NULL;
1943 struct dictEntry *de;
1944 redisDb *db = server.db+j;
1945 dict *dict;
1946
1947 if (server.maxmemory_policy == REDIS_MAXMEMORY_ALLKEYS_LRU ||
1948 server.maxmemory_policy == REDIS_MAXMEMORY_ALLKEYS_RANDOM)
1949 {
1950 dict = server.db[j].dict;
1951 } else {
1952 dict = server.db[j].expires;
1953 }
1954 if (dictSize(dict) == 0) continue;
1955
1956 /* volatile-random and allkeys-random policy */
1957 if (server.maxmemory_policy == REDIS_MAXMEMORY_ALLKEYS_RANDOM ||
1958 server.maxmemory_policy == REDIS_MAXMEMORY_VOLATILE_RANDOM)
1959 {
1960 de = dictGetRandomKey(dict);
1961 bestkey = dictGetKey(de);
1962 }
1963
1964 /* volatile-lru and allkeys-lru policy */
1965 else if (server.maxmemory_policy == REDIS_MAXMEMORY_ALLKEYS_LRU ||
1966 server.maxmemory_policy == REDIS_MAXMEMORY_VOLATILE_LRU)
1967 {
1968 for (k = 0; k < server.maxmemory_samples; k++) {
1969 sds thiskey;
1970 long thisval;
1971 robj *o;
1972
1973 de = dictGetRandomKey(dict);
1974 thiskey = dictGetKey(de);
1975 /* When policy is volatile-lru we need an additonal lookup
1976 * to locate the real key, as dict is set to db->expires. */
1977 if (server.maxmemory_policy == REDIS_MAXMEMORY_VOLATILE_LRU)
1978 de = dictFind(db->dict, thiskey);
1979 o = dictGetVal(de);
1980 thisval = estimateObjectIdleTime(o);
1981
1982 /* Higher idle time is better candidate for deletion */
1983 if (bestkey == NULL || thisval > bestval) {
1984 bestkey = thiskey;
1985 bestval = thisval;
1986 }
1987 }
1988 }
1989
1990 /* volatile-ttl */
1991 else if (server.maxmemory_policy == REDIS_MAXMEMORY_VOLATILE_TTL) {
1992 for (k = 0; k < server.maxmemory_samples; k++) {
1993 sds thiskey;
1994 long thisval;
1995
1996 de = dictGetRandomKey(dict);
1997 thiskey = dictGetKey(de);
1998 thisval = (long) dictGetVal(de);
1999
2000 /* Expire sooner (minor expire unix timestamp) is better
2001 * candidate for deletion */
2002 if (bestkey == NULL || thisval < bestval) {
2003 bestkey = thiskey;
2004 bestval = thisval;
2005 }
2006 }
2007 }
2008
2009 /* Finally remove the selected key. */
2010 if (bestkey) {
2011 long long delta;
2012
2013 robj *keyobj = createStringObject(bestkey,sdslen(bestkey));
2014 propagateExpire(db,keyobj);
2015 /* We compute the amount of memory freed by dbDelete() alone.
2016 * It is possible that actually the memory needed to propagate
2017 * the DEL in AOF and replication link is greater than the one
2018 * we are freeing removing the key, but we can't account for
2019 * that otherwise we would never exit the loop.
2020 *
2021 * AOF and Output buffer memory will be freed eventually so
2022 * we only care about memory used by the key space. */
2023 delta = (long long) zmalloc_used_memory();
2024 dbDelete(db,keyobj);
2025 delta -= (long long) zmalloc_used_memory();
2026 mem_freed += delta;
2027 server.stat_evictedkeys++;
2028 decrRefCount(keyobj);
2029 keys_freed++;
2030
2031 /* When the memory to free starts to be big enough, we may
2032 * start spending so much time here that is impossible to
2033 * deliver data to the slaves fast enough, so we force the
2034 * transmission here inside the loop. */
2035 if (slaves) flushSlavesOutputBuffers();
2036 }
2037 }
2038 if (!keys_freed) return REDIS_ERR; /* nothing to free... */
2039 }
2040 return REDIS_OK;
2041 }
2042
2043 /* =================================== Main! ================================ */
2044
2045 #ifdef __linux__
2046 int linuxOvercommitMemoryValue(void) {
2047 FILE *fp = fopen("/proc/sys/vm/overcommit_memory","r");
2048 char buf[64];
2049
2050 if (!fp) return -1;
2051 if (fgets(buf,64,fp) == NULL) {
2052 fclose(fp);
2053 return -1;
2054 }
2055 fclose(fp);
2056
2057 return atoi(buf);
2058 }
2059
2060 void linuxOvercommitMemoryWarning(void) {
2061 if (linuxOvercommitMemoryValue() == 0) {
2062 redisLog(REDIS_WARNING,"WARNING overcommit_memory is set to 0! Background save may fail under low memory condition. To fix this issue add 'vm.overcommit_memory = 1' to /etc/sysctl.conf and then reboot or run the command 'sysctl vm.overcommit_memory=1' for this to take effect.");
2063 }
2064 }
2065 #endif /* __linux__ */
2066
2067 void createPidFile(void) {
2068 /* Try to write the pid file in a best-effort way. */
2069 FILE *fp = fopen(server.pidfile,"w");
2070 if (fp) {
2071 fprintf(fp,"%d\n",(int)getpid());
2072 fclose(fp);
2073 }
2074 }
2075
2076 void daemonize(void) {
2077 int fd;
2078
2079 if (fork() != 0) exit(0); /* parent exits */
2080 setsid(); /* create a new session */
2081
2082 /* Every output goes to /dev/null. If Redis is daemonized but
2083 * the 'logfile' is set to 'stdout' in the configuration file
2084 * it will not log at all. */
2085 if ((fd = open("/dev/null", O_RDWR, 0)) != -1) {
2086 dup2(fd, STDIN_FILENO);
2087 dup2(fd, STDOUT_FILENO);
2088 dup2(fd, STDERR_FILENO);
2089 if (fd > STDERR_FILENO) close(fd);
2090 }
2091 }
2092
2093 void version() {
2094 printf("Redis server version %s (%s:%d)\n", REDIS_VERSION,
2095 redisGitSHA1(), atoi(redisGitDirty()) > 0);
2096 exit(0);
2097 }
2098
2099 void usage() {
2100 fprintf(stderr,"Usage: ./redis-server [/path/to/redis.conf] [options]\n");
2101 fprintf(stderr," ./redis-server - (read config from stdin)\n");
2102 fprintf(stderr," ./redis-server -v or --version\n");
2103 fprintf(stderr," ./redis-server -h or --help\n\n");
2104 fprintf(stderr,"Examples:\n");
2105 fprintf(stderr," ./redis-server (run the server with default conf)\n");
2106 fprintf(stderr," ./redis-server /etc/redis/6379.conf\n");
2107 fprintf(stderr," ./redis-server --port 7777\n");
2108 fprintf(stderr," ./redis-server --port 7777 --slaveof 127.0.0.1 8888\n");
2109 fprintf(stderr," ./redis-server /etc/myredis.conf --loglevel verbose\n");
2110 exit(1);
2111 }
2112
2113 void redisAsciiArt(void) {
2114 #include "asciilogo.h"
2115 char *buf = zmalloc(1024*16);
2116
2117 snprintf(buf,1024*16,ascii_logo,
2118 REDIS_VERSION,
2119 redisGitSHA1(),
2120 strtol(redisGitDirty(),NULL,10) > 0,
2121 (sizeof(long) == 8) ? "64" : "32",
2122 server.cluster_enabled ? "cluster" : "stand alone",
2123 server.port,
2124 (long) getpid()
2125 );
2126 redisLogRaw(REDIS_NOTICE|REDIS_LOG_RAW,buf);
2127 zfree(buf);
2128 }
2129
2130 static void sigtermHandler(int sig) {
2131 REDIS_NOTUSED(sig);
2132
2133 redisLog(REDIS_WARNING,"Received SIGTERM, scheduling shutdown...");
2134 server.shutdown_asap = 1;
2135 }
2136
2137 void setupSignalHandlers(void) {
2138 struct sigaction act;
2139
2140 /* When the SA_SIGINFO flag is set in sa_flags then sa_sigaction is used.
2141 * Otherwise, sa_handler is used. */
2142 sigemptyset(&act.sa_mask);
2143 act.sa_flags = SA_NODEFER | SA_ONSTACK | SA_RESETHAND;
2144 act.sa_handler = sigtermHandler;
2145 sigaction(SIGTERM, &act, NULL);
2146
2147 #ifdef HAVE_BACKTRACE
2148 sigemptyset(&act.sa_mask);
2149 act.sa_flags = SA_NODEFER | SA_ONSTACK | SA_RESETHAND | SA_SIGINFO;
2150 act.sa_sigaction = sigsegvHandler;
2151 sigaction(SIGSEGV, &act, NULL);
2152 sigaction(SIGBUS, &act, NULL);
2153 sigaction(SIGFPE, &act, NULL);
2154 sigaction(SIGILL, &act, NULL);
2155 #endif
2156 return;
2157 }
2158
2159 int main(int argc, char **argv) {
2160 long long start;
2161 struct timeval tv;
2162
2163 /* We need to initialize our libraries, and the server configuration. */
2164 zmalloc_enable_thread_safeness();
2165 srand(time(NULL)^getpid());
2166 gettimeofday(&tv,NULL);
2167 dictSetHashFunctionSeed(tv.tv_sec^tv.tv_usec^getpid());
2168 initServerConfig();
2169
2170 if (argc >= 2) {
2171 int j = 1; /* First option to parse in argv[] */
2172 sds options = sdsempty();
2173 char *configfile = NULL;
2174
2175 /* Handle special options --help and --version */
2176 if (strcmp(argv[1], "-v") == 0 ||
2177 strcmp(argv[1], "--version") == 0) version();
2178 if (strcmp(argv[1], "--help") == 0 ||
2179 strcmp(argv[1], "-h") == 0) usage();
2180 /* First argument is the config file name? */
2181 if (argv[j][0] != '-' || argv[j][1] != '-')
2182 configfile = argv[j++];
2183 /* All the other options are parsed and conceptually appended to the
2184 * configuration file. For instance --port 6380 will generate the
2185 * string "port 6380\n" to be parsed after the actual file name
2186 * is parsed, if any. */
2187 while(j != argc) {
2188 if (argv[j][0] == '-' && argv[j][1] == '-') {
2189 /* Option name */
2190 if (sdslen(options)) options = sdscat(options,"\n");
2191 options = sdscat(options,argv[j]+2);
2192 options = sdscat(options," ");
2193 } else {
2194 /* Option argument */
2195 options = sdscatrepr(options,argv[j],strlen(argv[j]));
2196 options = sdscat(options," ");
2197 }
2198 j++;
2199 }
2200 resetServerSaveParams();
2201 loadServerConfig(configfile,options);
2202 sdsfree(options);
2203 } else {
2204 redisLog(REDIS_WARNING,"Warning: no config file specified, using the default config. In order to specify a config file use 'redis-server /path/to/redis.conf'");
2205 }
2206 if (server.daemonize) daemonize();
2207 initServer();
2208 if (server.daemonize) createPidFile();
2209 redisAsciiArt();
2210 redisLog(REDIS_WARNING,"Server started, Redis version " REDIS_VERSION);
2211 #ifdef __linux__
2212 linuxOvercommitMemoryWarning();
2213 #endif
2214 start = ustime();
2215 if (server.aof_state == REDIS_AOF_ON) {
2216 if (loadAppendOnlyFile(server.aof_filename) == REDIS_OK)
2217 redisLog(REDIS_NOTICE,"DB loaded from append only file: %.3f seconds",(float)(ustime()-start)/1000000);
2218 } else {
2219 if (rdbLoad(server.rdb_filename) == REDIS_OK) {
2220 redisLog(REDIS_NOTICE,"DB loaded from disk: %.3f seconds",
2221 (float)(ustime()-start)/1000000);
2222 } else if (errno != ENOENT) {
2223 redisLog(REDIS_WARNING,"Fatal error loading the DB. Exiting.");
2224 exit(1);
2225 }
2226 }
2227 if (server.ipfd > 0)
2228 redisLog(REDIS_NOTICE,"The server is now ready to accept connections on port %d", server.port);
2229 if (server.sofd > 0)
2230 redisLog(REDIS_NOTICE,"The server is now ready to accept connections at %s", server.unixsocket);
2231 aeSetBeforeSleepProc(server.el,beforeSleep);
2232 aeMain(server.el);
2233 aeDeleteEventLoop(server.el);
2234 return 0;
2235 }
2236
2237 /* The End */