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1 #ifndef __REDIS_H
2 #define __REDIS_H
3
4 #include "fmacros.h"
5 #include "config.h"
6
7 #if defined(__sun)
8 #include "solarisfixes.h"
9 #endif
10
11 #include <stdio.h>
12 #include <stdlib.h>
13 #include <string.h>
14 #include <time.h>
15 #include <limits.h>
16 #include <unistd.h>
17 #include <errno.h>
18 #include <inttypes.h>
19 #include <pthread.h>
20 #include <syslog.h>
21 #include <netinet/in.h>
22
23 #include "ae.h" /* Event driven programming library */
24 #include "sds.h" /* Dynamic safe strings */
25 #include "dict.h" /* Hash tables */
26 #include "adlist.h" /* Linked lists */
27 #include "zmalloc.h" /* total memory usage aware version of malloc/free */
28 #include "anet.h" /* Networking the easy way */
29 #include "zipmap.h" /* Compact string -> string data structure */
30 #include "ziplist.h" /* Compact list data structure */
31 #include "intset.h" /* Compact integer set structure */
32 #include "version.h" /* Version macro */
33 #include "util.h" /* Misc functions useful in many places */
34
35 /* Error codes */
36 #define REDIS_OK 0
37 #define REDIS_ERR -1
38
39 /* Static server configuration */
40 #define REDIS_SERVERPORT 6379 /* TCP port */
41 #define REDIS_MAXIDLETIME (60*5) /* default client timeout */
42 #define REDIS_IOBUF_LEN 1024
43 #define REDIS_LOADBUF_LEN 1024
44 #define REDIS_DEFAULT_DBNUM 16
45 #define REDIS_CONFIGLINE_MAX 1024
46 #define REDIS_MAX_SYNC_TIME 60 /* Slave can't take more to sync */
47 #define REDIS_EXPIRELOOKUPS_PER_CRON 10 /* lookup 10 expires per loop */
48 #define REDIS_MAX_WRITE_PER_EVENT (1024*64)
49 #define REDIS_REQUEST_MAX_SIZE (1024*1024*256) /* max bytes in inline command */
50 #define REDIS_SHARED_INTEGERS 10000
51 #define REDIS_REPLY_CHUNK_BYTES (5*1500) /* 5 TCP packets with default MTU */
52 #define REDIS_MAX_LOGMSG_LEN 1024 /* Default maximum length of syslog messages */
53 #define REDIS_AUTO_AOFREWRITE_PERC 100
54 #define REDIS_AUTO_AOFREWRITE_MIN_SIZE (1024*1024)
55 #define REDIS_SLOWLOG_LOG_SLOWER_THAN 10000
56 #define REDIS_SLOWLOG_MAX_LEN 64
57
58 /* Hash table parameters */
59 #define REDIS_HT_MINFILL 10 /* Minimal hash table fill 10% */
60
61 /* Command flags:
62 * REDIS_CMD_DENYOOM:
63 * Commands marked with this flag will return an error when 'maxmemory' is
64 * set and the server is using more than 'maxmemory' bytes of memory.
65 * In short: commands with this flag are denied on low memory conditions.
66 * REDIS_CMD_FORCE_REPLICATION:
67 * Force replication even if dirty is 0. */
68 #define REDIS_CMD_DENYOOM 4
69 #define REDIS_CMD_FORCE_REPLICATION 8
70
71 /* Object types */
72 #define REDIS_STRING 0
73 #define REDIS_LIST 1
74 #define REDIS_SET 2
75 #define REDIS_ZSET 3
76 #define REDIS_HASH 4
77 #define REDIS_VMPOINTER 8
78
79 /* Object types only used for persistence in .rdb files */
80 #define REDIS_HASH_ZIPMAP 9
81 #define REDIS_LIST_ZIPLIST 10
82 #define REDIS_SET_INTSET 11
83 #define REDIS_ZSET_ZIPLIST 12
84
85 /* Objects encoding. Some kind of objects like Strings and Hashes can be
86 * internally represented in multiple ways. The 'encoding' field of the object
87 * is set to one of this fields for this object. */
88 #define REDIS_ENCODING_RAW 0 /* Raw representation */
89 #define REDIS_ENCODING_INT 1 /* Encoded as integer */
90 #define REDIS_ENCODING_HT 2 /* Encoded as hash table */
91 #define REDIS_ENCODING_ZIPMAP 3 /* Encoded as zipmap */
92 #define REDIS_ENCODING_LINKEDLIST 4 /* Encoded as regular linked list */
93 #define REDIS_ENCODING_ZIPLIST 5 /* Encoded as ziplist */
94 #define REDIS_ENCODING_INTSET 6 /* Encoded as intset */
95 #define REDIS_ENCODING_SKIPLIST 7 /* Encoded as skiplist */
96
97 /* Object types only used for dumping to disk */
98 #define REDIS_EXPIRETIME 253
99 #define REDIS_SELECTDB 254
100 #define REDIS_EOF 255
101
102 /* Defines related to the dump file format. To store 32 bits lengths for short
103 * keys requires a lot of space, so we check the most significant 2 bits of
104 * the first byte to interpreter the length:
105 *
106 * 00|000000 => if the two MSB are 00 the len is the 6 bits of this byte
107 * 01|000000 00000000 => 01, the len is 14 byes, 6 bits + 8 bits of next byte
108 * 10|000000 [32 bit integer] => if it's 01, a full 32 bit len will follow
109 * 11|000000 this means: specially encoded object will follow. The six bits
110 * number specify the kind of object that follows.
111 * See the REDIS_RDB_ENC_* defines.
112 *
113 * Lenghts up to 63 are stored using a single byte, most DB keys, and may
114 * values, will fit inside. */
115 #define REDIS_RDB_6BITLEN 0
116 #define REDIS_RDB_14BITLEN 1
117 #define REDIS_RDB_32BITLEN 2
118 #define REDIS_RDB_ENCVAL 3
119 #define REDIS_RDB_LENERR UINT_MAX
120
121 /* When a length of a string object stored on disk has the first two bits
122 * set, the remaining two bits specify a special encoding for the object
123 * accordingly to the following defines: */
124 #define REDIS_RDB_ENC_INT8 0 /* 8 bit signed integer */
125 #define REDIS_RDB_ENC_INT16 1 /* 16 bit signed integer */
126 #define REDIS_RDB_ENC_INT32 2 /* 32 bit signed integer */
127 #define REDIS_RDB_ENC_LZF 3 /* string compressed with FASTLZ */
128
129 /* Client flags */
130 #define REDIS_SLAVE 1 /* This client is a slave server */
131 #define REDIS_MASTER 2 /* This client is a master server */
132 #define REDIS_MONITOR 4 /* This client is a slave monitor, see MONITOR */
133 #define REDIS_MULTI 8 /* This client is in a MULTI context */
134 #define REDIS_BLOCKED 16 /* The client is waiting in a blocking operation */
135 #define REDIS_DIRTY_CAS 64 /* Watched keys modified. EXEC will fail. */
136 #define REDIS_CLOSE_AFTER_REPLY 128 /* Close after writing entire reply. */
137 #define REDIS_UNBLOCKED 256 /* This client was unblocked and is stored in
138 server.unblocked_clients */
139
140 /* Client request types */
141 #define REDIS_REQ_INLINE 1
142 #define REDIS_REQ_MULTIBULK 2
143
144 /* Slave replication state - slave side */
145 #define REDIS_REPL_NONE 0 /* No active replication */
146 #define REDIS_REPL_CONNECT 1 /* Must connect to master */
147 #define REDIS_REPL_CONNECTING 2 /* Connecting to master */
148 #define REDIS_REPL_TRANSFER 3 /* Receiving .rdb from master */
149 #define REDIS_REPL_CONNECTED 4 /* Connected to master */
150
151 /* Synchronous read timeout - slave side */
152 #define REDIS_REPL_SYNCIO_TIMEOUT 5
153
154 /* Slave replication state - from the point of view of master
155 * Note that in SEND_BULK and ONLINE state the slave receives new updates
156 * in its output queue. In the WAIT_BGSAVE state instead the server is waiting
157 * to start the next background saving in order to send updates to it. */
158 #define REDIS_REPL_WAIT_BGSAVE_START 3 /* master waits bgsave to start feeding it */
159 #define REDIS_REPL_WAIT_BGSAVE_END 4 /* master waits bgsave to start bulk DB transmission */
160 #define REDIS_REPL_SEND_BULK 5 /* master is sending the bulk DB */
161 #define REDIS_REPL_ONLINE 6 /* bulk DB already transmitted, receive updates */
162
163 /* List related stuff */
164 #define REDIS_HEAD 0
165 #define REDIS_TAIL 1
166
167 /* Sort operations */
168 #define REDIS_SORT_GET 0
169 #define REDIS_SORT_ASC 1
170 #define REDIS_SORT_DESC 2
171 #define REDIS_SORTKEY_MAX 1024
172
173 /* Log levels */
174 #define REDIS_DEBUG 0
175 #define REDIS_VERBOSE 1
176 #define REDIS_NOTICE 2
177 #define REDIS_WARNING 3
178 #define REDIS_LOG_RAW (1<<10) /* Modifier to log without timestamp */
179
180 /* Anti-warning macro... */
181 #define REDIS_NOTUSED(V) ((void) V)
182
183 #define ZSKIPLIST_MAXLEVEL 32 /* Should be enough for 2^32 elements */
184 #define ZSKIPLIST_P 0.25 /* Skiplist P = 1/4 */
185
186 /* Append only defines */
187 #define APPENDFSYNC_NO 0
188 #define APPENDFSYNC_ALWAYS 1
189 #define APPENDFSYNC_EVERYSEC 2
190
191 /* Zip structure related defaults */
192 #define REDIS_HASH_MAX_ZIPMAP_ENTRIES 512
193 #define REDIS_HASH_MAX_ZIPMAP_VALUE 64
194 #define REDIS_LIST_MAX_ZIPLIST_ENTRIES 512
195 #define REDIS_LIST_MAX_ZIPLIST_VALUE 64
196 #define REDIS_SET_MAX_INTSET_ENTRIES 512
197 #define REDIS_ZSET_MAX_ZIPLIST_ENTRIES 128
198 #define REDIS_ZSET_MAX_ZIPLIST_VALUE 64
199
200 /* Sets operations codes */
201 #define REDIS_OP_UNION 0
202 #define REDIS_OP_DIFF 1
203 #define REDIS_OP_INTER 2
204
205 /* Redis maxmemory strategies */
206 #define REDIS_MAXMEMORY_VOLATILE_LRU 0
207 #define REDIS_MAXMEMORY_VOLATILE_TTL 1
208 #define REDIS_MAXMEMORY_VOLATILE_RANDOM 2
209 #define REDIS_MAXMEMORY_ALLKEYS_LRU 3
210 #define REDIS_MAXMEMORY_ALLKEYS_RANDOM 4
211 #define REDIS_MAXMEMORY_NO_EVICTION 5
212
213 /* We can print the stacktrace, so our assert is defined this way: */
214 #define redisAssert(_e) ((_e)?(void)0 : (_redisAssert(#_e,__FILE__,__LINE__),_exit(1)))
215 #define redisPanic(_e) _redisPanic(#_e,__FILE__,__LINE__),_exit(1)
216 void _redisAssert(char *estr, char *file, int line);
217 void _redisPanic(char *msg, char *file, int line);
218
219 /*-----------------------------------------------------------------------------
220 * Data types
221 *----------------------------------------------------------------------------*/
222
223 /* A redis object, that is a type able to hold a string / list / set */
224
225 /* The actual Redis Object */
226 #define REDIS_LRU_CLOCK_MAX ((1<<21)-1) /* Max value of obj->lru */
227 #define REDIS_LRU_CLOCK_RESOLUTION 10 /* LRU clock resolution in seconds */
228 typedef struct redisObject {
229 unsigned type:4;
230 unsigned notused:2; /* Not used */
231 unsigned encoding:4;
232 unsigned lru:22; /* lru time (relative to server.lruclock) */
233 int refcount;
234 void *ptr;
235 /* VM fields are only allocated if VM is active, otherwise the
236 * object allocation function will just allocate
237 * sizeof(redisObjct) minus sizeof(redisObjectVM), so using
238 * Redis without VM active will not have any overhead. */
239 } robj;
240
241 /* The VM pointer structure - identifies an object in the swap file.
242 *
243 * This object is stored in place of the value
244 * object in the main key->value hash table representing a database.
245 * Note that the first fields (type, storage) are the same as the redisObject
246 * structure so that vmPointer strucuters can be accessed even when casted
247 * as redisObject structures.
248 *
249 * This is useful as we don't know if a value object is or not on disk, but we
250 * are always able to read obj->storage to check this. For vmPointer
251 * structures "type" is set to REDIS_VMPOINTER (even if without this field
252 * is still possible to check the kind of object from the value of 'storage').*/
253 typedef struct vmPointer {
254 unsigned type:4;
255 unsigned storage:2; /* REDIS_VM_SWAPPED or REDIS_VM_LOADING */
256 unsigned notused:26;
257 unsigned int vtype; /* type of the object stored in the swap file */
258 off_t page; /* the page at witch the object is stored on disk */
259 off_t usedpages; /* number of pages used on disk */
260 } vmpointer;
261
262 /* Macro used to initalize a Redis object allocated on the stack.
263 * Note that this macro is taken near the structure definition to make sure
264 * we'll update it when the structure is changed, to avoid bugs like
265 * bug #85 introduced exactly in this way. */
266 #define initStaticStringObject(_var,_ptr) do { \
267 _var.refcount = 1; \
268 _var.type = REDIS_STRING; \
269 _var.encoding = REDIS_ENCODING_RAW; \
270 _var.ptr = _ptr; \
271 } while(0);
272
273 typedef struct redisDb {
274 dict *dict; /* The keyspace for this DB */
275 dict *expires; /* Timeout of keys with a timeout set */
276 dict *blocking_keys; /* Keys with clients waiting for data (BLPOP) */
277 dict *watched_keys; /* WATCHED keys for MULTI/EXEC CAS */
278 int id;
279 } redisDb;
280
281 /* Client MULTI/EXEC state */
282 typedef struct multiCmd {
283 robj **argv;
284 int argc;
285 struct redisCommand *cmd;
286 } multiCmd;
287
288 typedef struct multiState {
289 multiCmd *commands; /* Array of MULTI commands */
290 int count; /* Total number of MULTI commands */
291 } multiState;
292
293 typedef struct blockingState {
294 robj **keys; /* The key we are waiting to terminate a blocking
295 * operation such as BLPOP. Otherwise NULL. */
296 int count; /* Number of blocking keys */
297 time_t timeout; /* Blocking operation timeout. If UNIX current time
298 * is >= timeout then the operation timed out. */
299 robj *target; /* The key that should receive the element,
300 * for BRPOPLPUSH. */
301 } blockingState;
302
303 /* With multiplexing we need to take per-clinet state.
304 * Clients are taken in a liked list. */
305 typedef struct redisClient {
306 int fd;
307 redisDb *db;
308 int dictid;
309 sds querybuf;
310 int argc;
311 robj **argv;
312 struct redisCommand *cmd;
313 int reqtype;
314 int multibulklen; /* number of multi bulk arguments left to read */
315 long bulklen; /* length of bulk argument in multi bulk request */
316 list *reply;
317 int sentlen;
318 time_t lastinteraction; /* time of the last interaction, used for timeout */
319 int flags; /* REDIS_SLAVE | REDIS_MONITOR | REDIS_MULTI ... */
320 int slaveseldb; /* slave selected db, if this client is a slave */
321 int authenticated; /* when requirepass is non-NULL */
322 int replstate; /* replication state if this is a slave */
323 int repldbfd; /* replication DB file descriptor */
324 long repldboff; /* replication DB file offset */
325 off_t repldbsize; /* replication DB file size */
326 multiState mstate; /* MULTI/EXEC state */
327 blockingState bpop; /* blocking state */
328 list *io_keys; /* Keys this client is waiting to be loaded from the
329 * swap file in order to continue. */
330 list *watched_keys; /* Keys WATCHED for MULTI/EXEC CAS */
331 dict *pubsub_channels; /* channels a client is interested in (SUBSCRIBE) */
332 list *pubsub_patterns; /* patterns a client is interested in (SUBSCRIBE) */
333
334 /* Response buffer */
335 int bufpos;
336 char buf[REDIS_REPLY_CHUNK_BYTES];
337 } redisClient;
338
339 struct saveparam {
340 time_t seconds;
341 int changes;
342 };
343
344 struct sharedObjectsStruct {
345 robj *crlf, *ok, *err, *emptybulk, *czero, *cone, *cnegone, *pong, *space,
346 *colon, *nullbulk, *nullmultibulk, *queued,
347 *emptymultibulk, *wrongtypeerr, *nokeyerr, *syntaxerr, *sameobjecterr,
348 *outofrangeerr, *loadingerr, *plus,
349 *select0, *select1, *select2, *select3, *select4,
350 *select5, *select6, *select7, *select8, *select9,
351 *messagebulk, *pmessagebulk, *subscribebulk, *unsubscribebulk, *mbulk3,
352 *mbulk4, *psubscribebulk, *punsubscribebulk,
353 *integers[REDIS_SHARED_INTEGERS];
354 };
355
356 /* ZSETs use a specialized version of Skiplists */
357 typedef struct zskiplistNode {
358 robj *obj;
359 double score;
360 struct zskiplistNode *backward;
361 struct zskiplistLevel {
362 struct zskiplistNode *forward;
363 unsigned int span;
364 } level[];
365 } zskiplistNode;
366
367 typedef struct zskiplist {
368 struct zskiplistNode *header, *tail;
369 unsigned long length;
370 int level;
371 } zskiplist;
372
373 typedef struct zset {
374 dict *dict;
375 zskiplist *zsl;
376 } zset;
377
378 /*-----------------------------------------------------------------------------
379 * Redis cluster data structures
380 *----------------------------------------------------------------------------*/
381
382 #define REDIS_CLUSTER_SLOTS 4096
383 #define REDIS_CLUSTER_OK 0 /* Everything looks ok */
384 #define REDIS_CLUSTER_FAIL 1 /* The cluster can't work */
385 #define REDIS_CLUSTER_NEEDHELP 2 /* The cluster works, but needs some help */
386 #define REDIS_CLUSTER_NAMELEN 40 /* sha1 hex length */
387 #define REDIS_CLUSTER_PORT_INCR 10000 /* Cluster port = baseport + PORT_INCR */
388
389 struct clusterNode;
390
391 /* clusterLink encapsulates everything needed to talk with a remote node. */
392 typedef struct clusterLink {
393 int fd; /* TCP socket file descriptor */
394 sds sndbuf; /* Packet send buffer */
395 sds rcvbuf; /* Packet reception buffer */
396 struct clusterNode *node; /* Node related to this link if any, or NULL */
397 } clusterLink;
398
399 /* Node flags */
400 #define REDIS_NODE_MASTER 1 /* The node is a master */
401 #define REDIS_NODE_SLAVE 2 /* The node is a slave */
402 #define REDIS_NODE_PFAIL 4 /* Failure? Need acknowledge */
403 #define REDIS_NODE_FAIL 8 /* The node is believed to be malfunctioning */
404 #define REDIS_NODE_MYSELF 16 /* This node is myself */
405 #define REDIS_NODE_HANDSHAKE 32 /* We have still to exchange the first ping */
406 #define REDIS_NODE_NOADDR 64 /* We don't know the address of this node */
407 #define REDIS_NODE_MEET 128 /* Send a MEET message to this node */
408 #define REDIS_NODE_NULL_NAME "\000\000\000\000\000\000\000\000\000\000\000\000\000\000\000\000\000\000\000\000\000\000\000\000\000\000\000\000\000\000\000\000\000\000\000\000\000\000\000\000"
409
410 struct clusterNode {
411 char name[REDIS_CLUSTER_NAMELEN]; /* Node name, hex string, sha1-size */
412 int flags; /* REDIS_NODE_... */
413 unsigned char slots[REDIS_CLUSTER_SLOTS/8]; /* slots handled by this node */
414 int numslaves; /* Number of slave nodes, if this is a master */
415 struct clusterNode **slaves; /* pointers to slave nodes */
416 struct clusterNode *slaveof; /* pointer to the master node */
417 time_t ping_sent; /* Unix time we sent latest ping */
418 time_t pong_received; /* Unix time we received the pong */
419 char *configdigest; /* Configuration digest of this node */
420 time_t configdigest_ts; /* Configuration digest timestamp */
421 char ip[16]; /* Latest known IP address of this node */
422 int port; /* Latest known port of this node */
423 clusterLink *link; /* TCP/IP link with this node */
424 };
425 typedef struct clusterNode clusterNode;
426
427 typedef struct {
428 char *configfile;
429 clusterNode *myself; /* This node */
430 int state; /* REDIS_CLUSTER_OK, REDIS_CLUSTER_FAIL, ... */
431 int node_timeout;
432 dict *nodes; /* Hash table of name -> clusterNode structures */
433 clusterNode *migrating_slots_to[REDIS_CLUSTER_SLOTS];
434 clusterNode *importing_slots_from[REDIS_CLUSTER_SLOTS];
435 clusterNode *slots[REDIS_CLUSTER_SLOTS];
436 zskiplist *slots_to_keys;
437 } clusterState;
438
439 /* Redis cluster messages header */
440
441 /* Note that the PING, PONG and MEET messages are actually the same exact
442 * kind of packet. PONG is the reply to ping, in the extact format as a PING,
443 * while MEET is a special PING that forces the receiver to add the sender
444 * as a node (if it is not already in the list). */
445 #define CLUSTERMSG_TYPE_PING 0 /* Ping */
446 #define CLUSTERMSG_TYPE_PONG 1 /* Pong (reply to Ping) */
447 #define CLUSTERMSG_TYPE_MEET 2 /* Meet "let's join" message */
448 #define CLUSTERMSG_TYPE_FAIL 3 /* Mark node xxx as failing */
449
450 /* Initially we don't know our "name", but we'll find it once we connect
451 * to the first node, using the getsockname() function. Then we'll use this
452 * address for all the next messages. */
453 typedef struct {
454 char nodename[REDIS_CLUSTER_NAMELEN];
455 uint32_t ping_sent;
456 uint32_t pong_received;
457 char ip[16]; /* IP address last time it was seen */
458 uint16_t port; /* port last time it was seen */
459 uint16_t flags;
460 uint32_t notused; /* for 64 bit alignment */
461 } clusterMsgDataGossip;
462
463 typedef struct {
464 char nodename[REDIS_CLUSTER_NAMELEN];
465 } clusterMsgDataFail;
466
467 union clusterMsgData {
468 /* PING, MEET and PONG */
469 struct {
470 /* Array of N clusterMsgDataGossip structures */
471 clusterMsgDataGossip gossip[1];
472 } ping;
473 /* FAIL */
474 struct {
475 clusterMsgDataFail about;
476 } fail;
477 };
478
479 typedef struct {
480 uint32_t totlen; /* Total length of this message */
481 uint16_t type; /* Message type */
482 uint16_t count; /* Only used for some kind of messages. */
483 char sender[REDIS_CLUSTER_NAMELEN]; /* Name of the sender node */
484 unsigned char myslots[REDIS_CLUSTER_SLOTS/8];
485 char slaveof[REDIS_CLUSTER_NAMELEN];
486 char configdigest[32];
487 uint16_t port; /* Sender TCP base port */
488 unsigned char state; /* Cluster state from the POV of the sender */
489 unsigned char notused[5]; /* Reserved for future use. For alignment. */
490 union clusterMsgData data;
491 } clusterMsg;
492
493 /*-----------------------------------------------------------------------------
494 * Global server state
495 *----------------------------------------------------------------------------*/
496
497 struct redisServer {
498 /* General */
499 redisDb *db;
500 dict *commands; /* Command table hahs table */
501 aeEventLoop *el;
502 /* Networking */
503 int port;
504 char *bindaddr;
505 char *unixsocket;
506 int ipfd;
507 int sofd;
508 int cfd;
509 list *clients;
510 list *slaves, *monitors;
511 char neterr[ANET_ERR_LEN];
512 /* RDB / AOF loading information */
513 int loading;
514 off_t loading_total_bytes;
515 off_t loading_loaded_bytes;
516 time_t loading_start_time;
517 /* Fast pointers to often looked up command */
518 struct redisCommand *delCommand, *multiCommand;
519 int cronloops; /* number of times the cron function run */
520 time_t lastsave; /* Unix time of last save succeeede */
521 /* Fields used only for stats */
522 time_t stat_starttime; /* server start time */
523 long long stat_numcommands; /* number of processed commands */
524 long long stat_numconnections; /* number of connections received */
525 long long stat_expiredkeys; /* number of expired keys */
526 long long stat_evictedkeys; /* number of evicted keys (maxmemory) */
527 long long stat_keyspace_hits; /* number of successful lookups of keys */
528 long long stat_keyspace_misses; /* number of failed lookups of keys */
529 size_t stat_peak_memory; /* max used memory record */
530 long long stat_fork_time; /* time needed to perform latets fork() */
531 list *slowlog;
532 long long slowlog_entry_id;
533 long long slowlog_log_slower_than;
534 unsigned long slowlog_max_len;
535 /* Configuration */
536 int verbosity;
537 int maxidletime;
538 int dbnum;
539 int daemonize;
540 int appendonly;
541 int appendfsync;
542 int no_appendfsync_on_rewrite;
543 int auto_aofrewrite_perc; /* Rewrite AOF if % growth is > M and... */
544 off_t auto_aofrewrite_min_size; /* the AOF file is at least N bytes. */
545 off_t auto_aofrewrite_base_size;/* AOF size on latest startup or rewrite. */
546 off_t appendonly_current_size; /* AOF current size. */
547 int aofrewrite_scheduled; /* Rewrite once BGSAVE terminates. */
548 int shutdown_asap;
549 int activerehashing;
550 char *requirepass;
551 /* Persistence */
552 long long dirty; /* changes to DB from the last save */
553 long long dirty_before_bgsave; /* used to restore dirty on failed BGSAVE */
554 time_t lastfsync;
555 int appendfd;
556 int appendseldb;
557 char *pidfile;
558 pid_t bgsavechildpid;
559 pid_t bgrewritechildpid;
560 sds bgrewritebuf; /* buffer taken by parent during oppend only rewrite */
561 sds aofbuf; /* AOF buffer, written before entering the event loop */
562 struct saveparam *saveparams;
563 int saveparamslen;
564 char *dbfilename;
565 int rdbcompression;
566 char *appendfilename;
567 /* Logging */
568 char *logfile;
569 int syslog_enabled;
570 char *syslog_ident;
571 int syslog_facility;
572 /* Replication related */
573 int isslave;
574 /* Slave specific fields */
575 char *masterauth;
576 char *masterhost;
577 int masterport;
578 redisClient *master; /* client that is master for this slave */
579 int repl_syncio_timeout; /* timeout for synchronous I/O calls */
580 int replstate; /* replication status if the instance is a slave */
581 off_t repl_transfer_left; /* bytes left reading .rdb */
582 int repl_transfer_s; /* slave -> master SYNC socket */
583 int repl_transfer_fd; /* slave -> master SYNC temp file descriptor */
584 char *repl_transfer_tmpfile; /* slave-> master SYNC temp file name */
585 time_t repl_transfer_lastio; /* unix time of the latest read, for timeout */
586 int repl_serve_stale_data; /* Serve stale data when link is down? */
587 time_t repl_down_since; /* unix time at which link with master went down */
588 /* Limits */
589 unsigned int maxclients;
590 unsigned long long maxmemory;
591 int maxmemory_policy;
592 int maxmemory_samples;
593 /* Blocked clients */
594 unsigned int bpop_blocked_clients;
595 list *unblocked_clients; /* list of clients to unblock before next loop */
596 /* Sort parameters - qsort_r() is only available under BSD so we
597 * have to take this state global, in order to pass it to sortCompare() */
598 int sort_desc;
599 int sort_alpha;
600 int sort_bypattern;
601 /* Zip structure config */
602 size_t hash_max_zipmap_entries;
603 size_t hash_max_zipmap_value;
604 size_t list_max_ziplist_entries;
605 size_t list_max_ziplist_value;
606 size_t set_max_intset_entries;
607 size_t zset_max_ziplist_entries;
608 size_t zset_max_ziplist_value;
609 time_t unixtime; /* Unix time sampled every second. */
610 /* Virtual memory I/O threads stuff */
611 /* An I/O thread process an element taken from the io_jobs queue and
612 * put the result of the operation in the io_done list. While the
613 * job is being processed, it's put on io_processing queue. */
614 list *io_newjobs; /* List of VM I/O jobs yet to be processed */
615 list *io_processing; /* List of VM I/O jobs being processed */
616 list *io_processed; /* List of VM I/O jobs already processed */
617 list *io_ready_clients; /* Clients ready to be unblocked. All keys loaded */
618 pthread_mutex_t io_mutex; /* lock to access io_jobs/io_done/io_thread_job */
619 pthread_cond_t io_condvar; /* I/O threads conditional variable */
620 pthread_attr_t io_threads_attr; /* attributes for threads creation */
621 int io_active_threads; /* Number of running I/O threads */
622 int vm_max_threads; /* Max number of I/O threads running at the same time */
623 /* Our main thread is blocked on the event loop, locking for sockets ready
624 * to be read or written, so when a threaded I/O operation is ready to be
625 * processed by the main thread, the I/O thread will use a unix pipe to
626 * awake the main thread. The followings are the two pipe FDs. */
627 int io_ready_pipe_read;
628 int io_ready_pipe_write;
629 /* Virtual memory stats */
630 unsigned long long vm_stats_used_pages;
631 unsigned long long vm_stats_swapped_objects;
632 unsigned long long vm_stats_swapouts;
633 unsigned long long vm_stats_swapins;
634 /* Pubsub */
635 dict *pubsub_channels; /* Map channels to list of subscribed clients */
636 list *pubsub_patterns; /* A list of pubsub_patterns */
637 /* Misc */
638 unsigned lruclock:22; /* clock incrementing every minute, for LRU */
639 unsigned lruclock_padding:10;
640 /* Cluster */
641 int cluster_enabled;
642 clusterState cluster;
643 };
644
645 typedef struct pubsubPattern {
646 redisClient *client;
647 robj *pattern;
648 } pubsubPattern;
649
650 typedef void redisCommandProc(redisClient *c);
651 typedef int *redisGetKeysProc(struct redisCommand *cmd, robj **argv, int argc, int *numkeys, int flags);
652 struct redisCommand {
653 char *name;
654 redisCommandProc *proc;
655 int arity;
656 int flags;
657 /* Use a function to determine keys arguments in a command line.
658 * Used for Redis Cluster redirect. */
659 redisGetKeysProc *getkeys_proc;
660 /* What keys should be loaded in background when calling this command? */
661 int firstkey; /* The first argument that's a key (0 = no keys) */
662 int lastkey; /* THe last argument that's a key */
663 int keystep; /* The step between first and last key */
664 long long microseconds, calls;
665 };
666
667 struct redisFunctionSym {
668 char *name;
669 unsigned long pointer;
670 };
671
672 typedef struct _redisSortObject {
673 robj *obj;
674 union {
675 double score;
676 robj *cmpobj;
677 } u;
678 } redisSortObject;
679
680 typedef struct _redisSortOperation {
681 int type;
682 robj *pattern;
683 } redisSortOperation;
684
685 /* Structure to hold list iteration abstraction. */
686 typedef struct {
687 robj *subject;
688 unsigned char encoding;
689 unsigned char direction; /* Iteration direction */
690 unsigned char *zi;
691 listNode *ln;
692 } listTypeIterator;
693
694 /* Structure for an entry while iterating over a list. */
695 typedef struct {
696 listTypeIterator *li;
697 unsigned char *zi; /* Entry in ziplist */
698 listNode *ln; /* Entry in linked list */
699 } listTypeEntry;
700
701 /* Structure to hold set iteration abstraction. */
702 typedef struct {
703 robj *subject;
704 int encoding;
705 int ii; /* intset iterator */
706 dictIterator *di;
707 } setTypeIterator;
708
709 /* Structure to hold hash iteration abstration. Note that iteration over
710 * hashes involves both fields and values. Because it is possible that
711 * not both are required, store pointers in the iterator to avoid
712 * unnecessary memory allocation for fields/values. */
713 typedef struct {
714 int encoding;
715 unsigned char *zi;
716 unsigned char *zk, *zv;
717 unsigned int zklen, zvlen;
718
719 dictIterator *di;
720 dictEntry *de;
721 } hashTypeIterator;
722
723 #define REDIS_HASH_KEY 1
724 #define REDIS_HASH_VALUE 2
725
726 /*-----------------------------------------------------------------------------
727 * Extern declarations
728 *----------------------------------------------------------------------------*/
729
730 extern struct redisServer server;
731 extern struct sharedObjectsStruct shared;
732 extern dictType setDictType;
733 extern dictType zsetDictType;
734 extern dictType clusterNodesDictType;
735 extern double R_Zero, R_PosInf, R_NegInf, R_Nan;
736 dictType hashDictType;
737
738 /*-----------------------------------------------------------------------------
739 * Functions prototypes
740 *----------------------------------------------------------------------------*/
741
742 /* Utils */
743 long long ustime(void);
744
745 /* networking.c -- Networking and Client related operations */
746 redisClient *createClient(int fd);
747 void closeTimedoutClients(void);
748 void freeClient(redisClient *c);
749 void resetClient(redisClient *c);
750 void sendReplyToClient(aeEventLoop *el, int fd, void *privdata, int mask);
751 void addReply(redisClient *c, robj *obj);
752 void *addDeferredMultiBulkLength(redisClient *c);
753 void setDeferredMultiBulkLength(redisClient *c, void *node, long length);
754 void addReplySds(redisClient *c, sds s);
755 void processInputBuffer(redisClient *c);
756 void acceptTcpHandler(aeEventLoop *el, int fd, void *privdata, int mask);
757 void acceptUnixHandler(aeEventLoop *el, int fd, void *privdata, int mask);
758 void readQueryFromClient(aeEventLoop *el, int fd, void *privdata, int mask);
759 void addReplyBulk(redisClient *c, robj *obj);
760 void addReplyBulkCString(redisClient *c, char *s);
761 void addReplyBulkCBuffer(redisClient *c, void *p, size_t len);
762 void addReplyBulkLongLong(redisClient *c, long long ll);
763 void acceptHandler(aeEventLoop *el, int fd, void *privdata, int mask);
764 void addReply(redisClient *c, robj *obj);
765 void addReplySds(redisClient *c, sds s);
766 void addReplyError(redisClient *c, char *err);
767 void addReplyStatus(redisClient *c, char *status);
768 void addReplyDouble(redisClient *c, double d);
769 void addReplyLongLong(redisClient *c, long long ll);
770 void addReplyMultiBulkLen(redisClient *c, long length);
771 void *dupClientReplyValue(void *o);
772 void getClientsMaxBuffers(unsigned long *longest_output_list,
773 unsigned long *biggest_input_buffer);
774 void rewriteClientCommandVector(redisClient *c, int argc, ...);
775
776 #ifdef __GNUC__
777 void addReplyErrorFormat(redisClient *c, const char *fmt, ...)
778 __attribute__((format(printf, 2, 3)));
779 void addReplyStatusFormat(redisClient *c, const char *fmt, ...)
780 __attribute__((format(printf, 2, 3)));
781 #else
782 void addReplyErrorFormat(redisClient *c, const char *fmt, ...);
783 void addReplyStatusFormat(redisClient *c, const char *fmt, ...);
784 #endif
785
786 /* List data type */
787 void listTypeTryConversion(robj *subject, robj *value);
788 void listTypePush(robj *subject, robj *value, int where);
789 robj *listTypePop(robj *subject, int where);
790 unsigned long listTypeLength(robj *subject);
791 listTypeIterator *listTypeInitIterator(robj *subject, int index, unsigned char direction);
792 void listTypeReleaseIterator(listTypeIterator *li);
793 int listTypeNext(listTypeIterator *li, listTypeEntry *entry);
794 robj *listTypeGet(listTypeEntry *entry);
795 void listTypeInsert(listTypeEntry *entry, robj *value, int where);
796 int listTypeEqual(listTypeEntry *entry, robj *o);
797 void listTypeDelete(listTypeEntry *entry);
798 void listTypeConvert(robj *subject, int enc);
799 void unblockClientWaitingData(redisClient *c);
800 int handleClientsWaitingListPush(redisClient *c, robj *key, robj *ele);
801 void popGenericCommand(redisClient *c, int where);
802
803 /* MULTI/EXEC/WATCH... */
804 void unwatchAllKeys(redisClient *c);
805 void initClientMultiState(redisClient *c);
806 void freeClientMultiState(redisClient *c);
807 void queueMultiCommand(redisClient *c);
808 void touchWatchedKey(redisDb *db, robj *key);
809 void touchWatchedKeysOnFlush(int dbid);
810
811 /* Redis object implementation */
812 void decrRefCount(void *o);
813 void incrRefCount(robj *o);
814 void freeStringObject(robj *o);
815 void freeListObject(robj *o);
816 void freeSetObject(robj *o);
817 void freeZsetObject(robj *o);
818 void freeHashObject(robj *o);
819 robj *createObject(int type, void *ptr);
820 robj *createStringObject(char *ptr, size_t len);
821 robj *dupStringObject(robj *o);
822 int isObjectRepresentableAsLongLong(robj *o, long long *llongval);
823 robj *tryObjectEncoding(robj *o);
824 robj *getDecodedObject(robj *o);
825 size_t stringObjectLen(robj *o);
826 robj *createStringObjectFromLongLong(long long value);
827 robj *createListObject(void);
828 robj *createZiplistObject(void);
829 robj *createSetObject(void);
830 robj *createIntsetObject(void);
831 robj *createHashObject(void);
832 robj *createZsetObject(void);
833 robj *createZsetZiplistObject(void);
834 int getLongFromObjectOrReply(redisClient *c, robj *o, long *target, const char *msg);
835 int checkType(redisClient *c, robj *o, int type);
836 int getLongLongFromObjectOrReply(redisClient *c, robj *o, long long *target, const char *msg);
837 int getDoubleFromObjectOrReply(redisClient *c, robj *o, double *target, const char *msg);
838 int getLongLongFromObject(robj *o, long long *target);
839 char *strEncoding(int encoding);
840 int compareStringObjects(robj *a, robj *b);
841 int equalStringObjects(robj *a, robj *b);
842 unsigned long estimateObjectIdleTime(robj *o);
843
844 /* Synchronous I/O with timeout */
845 int syncWrite(int fd, char *ptr, ssize_t size, int timeout);
846 int syncRead(int fd, char *ptr, ssize_t size, int timeout);
847 int syncReadLine(int fd, char *ptr, ssize_t size, int timeout);
848 int fwriteBulkString(FILE *fp, char *s, unsigned long len);
849 int fwriteBulkDouble(FILE *fp, double d);
850 int fwriteBulkLongLong(FILE *fp, long long l);
851 int fwriteBulkObject(FILE *fp, robj *obj);
852 int fwriteBulkCount(FILE *fp, char prefix, int count);
853
854 /* Replication */
855 void replicationFeedSlaves(list *slaves, int dictid, robj **argv, int argc);
856 void replicationFeedMonitors(list *monitors, int dictid, robj **argv, int argc);
857 void updateSlavesWaitingBgsave(int bgsaveerr);
858 void replicationCron(void);
859
860 /* Generic persistence functions */
861 void startLoading(FILE *fp);
862 void loadingProgress(off_t pos);
863 void stopLoading(void);
864
865 /* RDB persistence */
866 int rdbLoad(char *filename);
867 int rdbSaveBackground(char *filename);
868 void rdbRemoveTempFile(pid_t childpid);
869 int rdbSave(char *filename);
870 int rdbSaveObject(FILE *fp, robj *o);
871 off_t rdbSavedObjectLen(robj *o);
872 off_t rdbSavedObjectPages(robj *o);
873 robj *rdbLoadObject(int type, FILE *fp);
874 void backgroundSaveDoneHandler(int exitcode, int bysignal);
875 int rdbSaveKeyValuePair(FILE *fp, robj *key, robj *val, time_t expireitme, time_t now);
876 int rdbLoadType(FILE *fp);
877 time_t rdbLoadTime(FILE *fp);
878 robj *rdbLoadStringObject(FILE *fp);
879 int rdbSaveType(FILE *fp, unsigned char type);
880 int rdbSaveLen(FILE *fp, uint32_t len);
881
882 /* AOF persistence */
883 void flushAppendOnlyFile(void);
884 void feedAppendOnlyFile(struct redisCommand *cmd, int dictid, robj **argv, int argc);
885 void aofRemoveTempFile(pid_t childpid);
886 int rewriteAppendOnlyFileBackground(void);
887 int loadAppendOnlyFile(char *filename);
888 void stopAppendOnly(void);
889 int startAppendOnly(void);
890 void backgroundRewriteDoneHandler(int exitcode, int bysignal);
891
892 /* Sorted sets data type */
893
894 /* Struct to hold a inclusive/exclusive range spec. */
895 typedef struct {
896 double min, max;
897 int minex, maxex; /* are min or max exclusive? */
898 } zrangespec;
899
900 zskiplist *zslCreate(void);
901 void zslFree(zskiplist *zsl);
902 zskiplistNode *zslInsert(zskiplist *zsl, double score, robj *obj);
903 unsigned char *zzlInsert(unsigned char *zl, robj *ele, double score);
904 int zslDelete(zskiplist *zsl, double score, robj *obj);
905 zskiplistNode *zslFirstInRange(zskiplist *zsl, zrangespec range);
906 double zzlGetScore(unsigned char *sptr);
907 void zzlNext(unsigned char *zl, unsigned char **eptr, unsigned char **sptr);
908 void zzlPrev(unsigned char *zl, unsigned char **eptr, unsigned char **sptr);
909 unsigned int zsetLength(robj *zobj);
910 void zsetConvert(robj *zobj, int encoding);
911
912 /* Core functions */
913 void freeMemoryIfNeeded(void);
914 int processCommand(redisClient *c);
915 void setupSignalHandlers(void);
916 struct redisCommand *lookupCommand(sds name);
917 struct redisCommand *lookupCommandByCString(char *s);
918 void call(redisClient *c);
919 int prepareForShutdown();
920 void redisLog(int level, const char *fmt, ...);
921 void usage();
922 void updateDictResizePolicy(void);
923 int htNeedsResize(dict *dict);
924 void oom(const char *msg);
925 void populateCommandTable(void);
926 void resetCommandTableStats(void);
927
928 /* Set data type */
929 robj *setTypeCreate(robj *value);
930 int setTypeAdd(robj *subject, robj *value);
931 int setTypeRemove(robj *subject, robj *value);
932 int setTypeIsMember(robj *subject, robj *value);
933 setTypeIterator *setTypeInitIterator(robj *subject);
934 void setTypeReleaseIterator(setTypeIterator *si);
935 int setTypeNext(setTypeIterator *si, robj **objele, int64_t *llele);
936 robj *setTypeNextObject(setTypeIterator *si);
937 int setTypeRandomElement(robj *setobj, robj **objele, int64_t *llele);
938 unsigned long setTypeSize(robj *subject);
939 void setTypeConvert(robj *subject, int enc);
940
941 /* Hash data type */
942 void convertToRealHash(robj *o);
943 void hashTypeTryConversion(robj *subject, robj **argv, int start, int end);
944 void hashTypeTryObjectEncoding(robj *subject, robj **o1, robj **o2);
945 int hashTypeGet(robj *o, robj *key, robj **objval, unsigned char **v, unsigned int *vlen);
946 robj *hashTypeGetObject(robj *o, robj *key);
947 int hashTypeExists(robj *o, robj *key);
948 int hashTypeSet(robj *o, robj *key, robj *value);
949 int hashTypeDelete(robj *o, robj *key);
950 unsigned long hashTypeLength(robj *o);
951 hashTypeIterator *hashTypeInitIterator(robj *subject);
952 void hashTypeReleaseIterator(hashTypeIterator *hi);
953 int hashTypeNext(hashTypeIterator *hi);
954 int hashTypeCurrent(hashTypeIterator *hi, int what, robj **objval, unsigned char **v, unsigned int *vlen);
955 robj *hashTypeCurrentObject(hashTypeIterator *hi, int what);
956 robj *hashTypeLookupWriteOrCreate(redisClient *c, robj *key);
957
958 /* Pub / Sub */
959 int pubsubUnsubscribeAllChannels(redisClient *c, int notify);
960 int pubsubUnsubscribeAllPatterns(redisClient *c, int notify);
961 void freePubsubPattern(void *p);
962 int listMatchPubsubPattern(void *a, void *b);
963
964 /* Configuration */
965 void loadServerConfig(char *filename);
966 void appendServerSaveParams(time_t seconds, int changes);
967 void resetServerSaveParams();
968
969 /* db.c -- Keyspace access API */
970 int removeExpire(redisDb *db, robj *key);
971 void propagateExpire(redisDb *db, robj *key);
972 int expireIfNeeded(redisDb *db, robj *key);
973 time_t getExpire(redisDb *db, robj *key);
974 void setExpire(redisDb *db, robj *key, time_t when);
975 robj *lookupKey(redisDb *db, robj *key);
976 robj *lookupKeyRead(redisDb *db, robj *key);
977 robj *lookupKeyWrite(redisDb *db, robj *key);
978 robj *lookupKeyReadOrReply(redisClient *c, robj *key, robj *reply);
979 robj *lookupKeyWriteOrReply(redisClient *c, robj *key, robj *reply);
980 void dbAdd(redisDb *db, robj *key, robj *val);
981 void dbOverwrite(redisDb *db, robj *key, robj *val);
982 void setKey(redisDb *db, robj *key, robj *val);
983 int dbExists(redisDb *db, robj *key);
984 robj *dbRandomKey(redisDb *db);
985 int dbDelete(redisDb *db, robj *key);
986 long long emptyDb();
987 int selectDb(redisClient *c, int id);
988 void signalModifiedKey(redisDb *db, robj *key);
989 void signalFlushedDb(int dbid);
990 unsigned int GetKeysInSlot(unsigned int hashslot, robj **keys, unsigned int count);
991
992 /* API to get key arguments from commands */
993 #define REDIS_GETKEYS_ALL 0
994 #define REDIS_GETKEYS_PRELOAD 1
995 int *getKeysFromCommand(struct redisCommand *cmd, robj **argv, int argc, int *numkeys, int flags);
996 void getKeysFreeResult(int *result);
997 int *noPreloadGetKeys(struct redisCommand *cmd,robj **argv, int argc, int *numkeys, int flags);
998 int *renameGetKeys(struct redisCommand *cmd,robj **argv, int argc, int *numkeys, int flags);
999 int *zunionInterGetKeys(struct redisCommand *cmd,robj **argv, int argc, int *numkeys, int flags);
1000
1001 /* Cluster */
1002 void clusterInit(void);
1003 unsigned short crc16(const char *buf, int len);
1004 unsigned int keyHashSlot(char *key, int keylen);
1005 clusterNode *createClusterNode(char *nodename, int flags);
1006 int clusterAddNode(clusterNode *node);
1007 void clusterCron(void);
1008 clusterNode *getNodeByQuery(redisClient *c, struct redisCommand *cmd, robj **argv, int argc, int *hashslot, int *ask);
1009
1010 /* Git SHA1 */
1011 char *redisGitSHA1(void);
1012 char *redisGitDirty(void);
1013
1014 /* Commands prototypes */
1015 void authCommand(redisClient *c);
1016 void pingCommand(redisClient *c);
1017 void echoCommand(redisClient *c);
1018 void setCommand(redisClient *c);
1019 void setnxCommand(redisClient *c);
1020 void setexCommand(redisClient *c);
1021 void getCommand(redisClient *c);
1022 void delCommand(redisClient *c);
1023 void existsCommand(redisClient *c);
1024 void setbitCommand(redisClient *c);
1025 void getbitCommand(redisClient *c);
1026 void setrangeCommand(redisClient *c);
1027 void getrangeCommand(redisClient *c);
1028 void incrCommand(redisClient *c);
1029 void decrCommand(redisClient *c);
1030 void incrbyCommand(redisClient *c);
1031 void decrbyCommand(redisClient *c);
1032 void selectCommand(redisClient *c);
1033 void randomkeyCommand(redisClient *c);
1034 void keysCommand(redisClient *c);
1035 void dbsizeCommand(redisClient *c);
1036 void lastsaveCommand(redisClient *c);
1037 void saveCommand(redisClient *c);
1038 void bgsaveCommand(redisClient *c);
1039 void bgrewriteaofCommand(redisClient *c);
1040 void shutdownCommand(redisClient *c);
1041 void moveCommand(redisClient *c);
1042 void renameCommand(redisClient *c);
1043 void renamenxCommand(redisClient *c);
1044 void lpushCommand(redisClient *c);
1045 void rpushCommand(redisClient *c);
1046 void lpushxCommand(redisClient *c);
1047 void rpushxCommand(redisClient *c);
1048 void linsertCommand(redisClient *c);
1049 void lpopCommand(redisClient *c);
1050 void rpopCommand(redisClient *c);
1051 void llenCommand(redisClient *c);
1052 void lindexCommand(redisClient *c);
1053 void lrangeCommand(redisClient *c);
1054 void ltrimCommand(redisClient *c);
1055 void typeCommand(redisClient *c);
1056 void lsetCommand(redisClient *c);
1057 void saddCommand(redisClient *c);
1058 void sremCommand(redisClient *c);
1059 void smoveCommand(redisClient *c);
1060 void sismemberCommand(redisClient *c);
1061 void scardCommand(redisClient *c);
1062 void spopCommand(redisClient *c);
1063 void srandmemberCommand(redisClient *c);
1064 void sinterCommand(redisClient *c);
1065 void sinterstoreCommand(redisClient *c);
1066 void sunionCommand(redisClient *c);
1067 void sunionstoreCommand(redisClient *c);
1068 void sdiffCommand(redisClient *c);
1069 void sdiffstoreCommand(redisClient *c);
1070 void syncCommand(redisClient *c);
1071 void flushdbCommand(redisClient *c);
1072 void flushallCommand(redisClient *c);
1073 void sortCommand(redisClient *c);
1074 void lremCommand(redisClient *c);
1075 void rpoplpushCommand(redisClient *c);
1076 void infoCommand(redisClient *c);
1077 void mgetCommand(redisClient *c);
1078 void monitorCommand(redisClient *c);
1079 void expireCommand(redisClient *c);
1080 void expireatCommand(redisClient *c);
1081 void getsetCommand(redisClient *c);
1082 void ttlCommand(redisClient *c);
1083 void persistCommand(redisClient *c);
1084 void slaveofCommand(redisClient *c);
1085 void debugCommand(redisClient *c);
1086 void msetCommand(redisClient *c);
1087 void msetnxCommand(redisClient *c);
1088 void zaddCommand(redisClient *c);
1089 void zincrbyCommand(redisClient *c);
1090 void zrangeCommand(redisClient *c);
1091 void zrangebyscoreCommand(redisClient *c);
1092 void zrevrangebyscoreCommand(redisClient *c);
1093 void zcountCommand(redisClient *c);
1094 void zrevrangeCommand(redisClient *c);
1095 void zcardCommand(redisClient *c);
1096 void zremCommand(redisClient *c);
1097 void zscoreCommand(redisClient *c);
1098 void zremrangebyscoreCommand(redisClient *c);
1099 void multiCommand(redisClient *c);
1100 void execCommand(redisClient *c);
1101 void discardCommand(redisClient *c);
1102 void blpopCommand(redisClient *c);
1103 void brpopCommand(redisClient *c);
1104 void brpoplpushCommand(redisClient *c);
1105 void appendCommand(redisClient *c);
1106 void strlenCommand(redisClient *c);
1107 void zrankCommand(redisClient *c);
1108 void zrevrankCommand(redisClient *c);
1109 void hsetCommand(redisClient *c);
1110 void hsetnxCommand(redisClient *c);
1111 void hgetCommand(redisClient *c);
1112 void hmsetCommand(redisClient *c);
1113 void hmgetCommand(redisClient *c);
1114 void hdelCommand(redisClient *c);
1115 void hlenCommand(redisClient *c);
1116 void zremrangebyrankCommand(redisClient *c);
1117 void zunionstoreCommand(redisClient *c);
1118 void zinterstoreCommand(redisClient *c);
1119 void hkeysCommand(redisClient *c);
1120 void hvalsCommand(redisClient *c);
1121 void hgetallCommand(redisClient *c);
1122 void hexistsCommand(redisClient *c);
1123 void configCommand(redisClient *c);
1124 void hincrbyCommand(redisClient *c);
1125 void subscribeCommand(redisClient *c);
1126 void unsubscribeCommand(redisClient *c);
1127 void psubscribeCommand(redisClient *c);
1128 void punsubscribeCommand(redisClient *c);
1129 void publishCommand(redisClient *c);
1130 void watchCommand(redisClient *c);
1131 void unwatchCommand(redisClient *c);
1132 void clusterCommand(redisClient *c);
1133 void restoreCommand(redisClient *c);
1134 void migrateCommand(redisClient *c);
1135 void dumpCommand(redisClient *c);
1136 void objectCommand(redisClient *c);
1137 void clientCommand(redisClient *c);
1138
1139 #if defined(__GNUC__)
1140 void *calloc(size_t count, size_t size) __attribute__ ((deprecated));
1141 void free(void *ptr) __attribute__ ((deprecated));
1142 void *malloc(size_t size) __attribute__ ((deprecated));
1143 void *realloc(void *ptr, size_t size) __attribute__ ((deprecated));
1144 #endif
1145
1146 #endif