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Fixed compilation on *BSD systems
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e2641e09 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>
3688d7f3 18#include <inttypes.h>
d06a5b23 19#include <pthread.h>
e2641e09 20
21#include "ae.h" /* Event driven programming library */
22#include "sds.h" /* Dynamic safe strings */
23#include "dict.h" /* Hash tables */
24#include "adlist.h" /* Linked lists */
25#include "zmalloc.h" /* total memory usage aware version of malloc/free */
26#include "anet.h" /* Networking the easy way */
27#include "zipmap.h" /* Compact string -> string data structure */
28#include "ziplist.h" /* Compact list data structure */
29#include "version.h"
30
31/* Error codes */
32#define REDIS_OK 0
33#define REDIS_ERR -1
34
35/* Static server configuration */
36#define REDIS_SERVERPORT 6379 /* TCP port */
37#define REDIS_MAXIDLETIME (60*5) /* default client timeout */
38#define REDIS_IOBUF_LEN 1024
39#define REDIS_LOADBUF_LEN 1024
40#define REDIS_STATIC_ARGS 8
41#define REDIS_DEFAULT_DBNUM 16
42#define REDIS_CONFIGLINE_MAX 1024
43#define REDIS_OBJFREELIST_MAX 1000000 /* Max number of objects to cache */
44#define REDIS_MAX_SYNC_TIME 60 /* Slave can't take more to sync */
45#define REDIS_EXPIRELOOKUPS_PER_CRON 10 /* lookup 10 expires per loop */
46#define REDIS_MAX_WRITE_PER_EVENT (1024*64)
47#define REDIS_REQUEST_MAX_SIZE (1024*1024*256) /* max bytes in inline command */
48#define REDIS_SHARED_INTEGERS 10000
49
50/* If more then REDIS_WRITEV_THRESHOLD write packets are pending use writev */
51#define REDIS_WRITEV_THRESHOLD 3
52/* Max number of iovecs used for each writev call */
53#define REDIS_WRITEV_IOVEC_COUNT 256
54
55/* Hash table parameters */
56#define REDIS_HT_MINFILL 10 /* Minimal hash table fill 10% */
57
58/* Command flags */
59#define REDIS_CMD_BULK 1 /* Bulk write command */
60#define REDIS_CMD_INLINE 2 /* Inline command */
61/* REDIS_CMD_DENYOOM reserves a longer comment: all the commands marked with
62 this flags will return an error when the 'maxmemory' option is set in the
63 config file and the server is using more than maxmemory bytes of memory.
64 In short this commands are denied on low memory conditions. */
65#define REDIS_CMD_DENYOOM 4
66#define REDIS_CMD_FORCE_REPLICATION 8 /* Force replication even if dirty is 0 */
67
68/* Object types */
69#define REDIS_STRING 0
70#define REDIS_LIST 1
71#define REDIS_SET 2
72#define REDIS_ZSET 3
73#define REDIS_HASH 4
74#define REDIS_VMPOINTER 8
75
76/* Objects encoding. Some kind of objects like Strings and Hashes can be
77 * internally represented in multiple ways. The 'encoding' field of the object
78 * is set to one of this fields for this object. */
79#define REDIS_ENCODING_RAW 0 /* Raw representation */
80#define REDIS_ENCODING_INT 1 /* Encoded as integer */
81#define REDIS_ENCODING_HT 2 /* Encoded as hash table */
82#define REDIS_ENCODING_ZIPMAP 3 /* Encoded as zipmap */
83#define REDIS_ENCODING_LINKEDLIST 4 /* Encoded as regular linked list */
84#define REDIS_ENCODING_ZIPLIST 5 /* Encoded as ziplist */
85
86/* Object types only used for dumping to disk */
87#define REDIS_EXPIRETIME 253
88#define REDIS_SELECTDB 254
89#define REDIS_EOF 255
90
91/* Defines related to the dump file format. To store 32 bits lengths for short
92 * keys requires a lot of space, so we check the most significant 2 bits of
93 * the first byte to interpreter the length:
94 *
95 * 00|000000 => if the two MSB are 00 the len is the 6 bits of this byte
96 * 01|000000 00000000 => 01, the len is 14 byes, 6 bits + 8 bits of next byte
97 * 10|000000 [32 bit integer] => if it's 01, a full 32 bit len will follow
98 * 11|000000 this means: specially encoded object will follow. The six bits
99 * number specify the kind of object that follows.
100 * See the REDIS_RDB_ENC_* defines.
101 *
102 * Lenghts up to 63 are stored using a single byte, most DB keys, and may
103 * values, will fit inside. */
104#define REDIS_RDB_6BITLEN 0
105#define REDIS_RDB_14BITLEN 1
106#define REDIS_RDB_32BITLEN 2
107#define REDIS_RDB_ENCVAL 3
108#define REDIS_RDB_LENERR UINT_MAX
109
110/* When a length of a string object stored on disk has the first two bits
111 * set, the remaining two bits specify a special encoding for the object
112 * accordingly to the following defines: */
113#define REDIS_RDB_ENC_INT8 0 /* 8 bit signed integer */
114#define REDIS_RDB_ENC_INT16 1 /* 16 bit signed integer */
115#define REDIS_RDB_ENC_INT32 2 /* 32 bit signed integer */
116#define REDIS_RDB_ENC_LZF 3 /* string compressed with FASTLZ */
117
118/* Virtual memory object->where field. */
119#define REDIS_VM_MEMORY 0 /* The object is on memory */
120#define REDIS_VM_SWAPPED 1 /* The object is on disk */
121#define REDIS_VM_SWAPPING 2 /* Redis is swapping this object on disk */
122#define REDIS_VM_LOADING 3 /* Redis is loading this object from disk */
123
124/* Virtual memory static configuration stuff.
125 * Check vmFindContiguousPages() to know more about this magic numbers. */
126#define REDIS_VM_MAX_NEAR_PAGES 65536
127#define REDIS_VM_MAX_RANDOM_JUMP 4096
128#define REDIS_VM_MAX_THREADS 32
129#define REDIS_THREAD_STACK_SIZE (1024*1024*4)
130/* The following is the *percentage* of completed I/O jobs to process when the
131 * handelr is called. While Virtual Memory I/O operations are performed by
132 * threads, this operations must be processed by the main thread when completed
133 * in order to take effect. */
134#define REDIS_MAX_COMPLETED_JOBS_PROCESSED 1
135
136/* Client flags */
137#define REDIS_SLAVE 1 /* This client is a slave server */
138#define REDIS_MASTER 2 /* This client is a master server */
139#define REDIS_MONITOR 4 /* This client is a slave monitor, see MONITOR */
140#define REDIS_MULTI 8 /* This client is in a MULTI context */
141#define REDIS_BLOCKED 16 /* The client is waiting in a blocking operation */
142#define REDIS_IO_WAIT 32 /* The client is waiting for Virtual Memory I/O */
143#define REDIS_DIRTY_CAS 64 /* Watched keys modified. EXEC will fail. */
144
145/* Slave replication state - slave side */
146#define REDIS_REPL_NONE 0 /* No active replication */
147#define REDIS_REPL_CONNECT 1 /* Must connect to master */
148#define REDIS_REPL_CONNECTED 2 /* Connected to master */
149
150/* Slave replication state - from the point of view of master
151 * Note that in SEND_BULK and ONLINE state the slave receives new updates
152 * in its output queue. In the WAIT_BGSAVE state instead the server is waiting
153 * to start the next background saving in order to send updates to it. */
154#define REDIS_REPL_WAIT_BGSAVE_START 3 /* master waits bgsave to start feeding it */
155#define REDIS_REPL_WAIT_BGSAVE_END 4 /* master waits bgsave to start bulk DB transmission */
156#define REDIS_REPL_SEND_BULK 5 /* master is sending the bulk DB */
157#define REDIS_REPL_ONLINE 6 /* bulk DB already transmitted, receive updates */
158
159/* List related stuff */
160#define REDIS_HEAD 0
161#define REDIS_TAIL 1
162
163/* Sort operations */
164#define REDIS_SORT_GET 0
165#define REDIS_SORT_ASC 1
166#define REDIS_SORT_DESC 2
167#define REDIS_SORTKEY_MAX 1024
168
169/* Log levels */
170#define REDIS_DEBUG 0
171#define REDIS_VERBOSE 1
172#define REDIS_NOTICE 2
173#define REDIS_WARNING 3
174
175/* Anti-warning macro... */
176#define REDIS_NOTUSED(V) ((void) V)
177
178#define ZSKIPLIST_MAXLEVEL 32 /* Should be enough for 2^32 elements */
179#define ZSKIPLIST_P 0.25 /* Skiplist P = 1/4 */
180
181/* Append only defines */
182#define APPENDFSYNC_NO 0
183#define APPENDFSYNC_ALWAYS 1
184#define APPENDFSYNC_EVERYSEC 2
185
186/* Zip structure related defaults */
187#define REDIS_HASH_MAX_ZIPMAP_ENTRIES 64
188#define REDIS_HASH_MAX_ZIPMAP_VALUE 512
189#define REDIS_LIST_MAX_ZIPLIST_ENTRIES 1024
190#define REDIS_LIST_MAX_ZIPLIST_VALUE 32
191
192/* Sets operations codes */
193#define REDIS_OP_UNION 0
194#define REDIS_OP_DIFF 1
195#define REDIS_OP_INTER 2
196
197/* We can print the stacktrace, so our assert is defined this way: */
198#define redisAssert(_e) ((_e)?(void)0 : (_redisAssert(#_e,__FILE__,__LINE__),_exit(1)))
199#define redisPanic(_e) _redisPanic(#_e,__FILE__,__LINE__),_exit(1)
200void _redisAssert(char *estr, char *file, int line);
201void _redisPanic(char *msg, char *file, int line);
202
203/*-----------------------------------------------------------------------------
204 * Data types
205 *----------------------------------------------------------------------------*/
206
207/* A redis object, that is a type able to hold a string / list / set */
208
209/* The actual Redis Object */
210typedef struct redisObject {
211 unsigned type:4;
212 unsigned storage:2; /* REDIS_VM_MEMORY or REDIS_VM_SWAPPING */
213 unsigned encoding:4;
214 unsigned lru:22; /* lru time (relative to server.lruclock) */
215 int refcount;
216 void *ptr;
217 /* VM fields are only allocated if VM is active, otherwise the
218 * object allocation function will just allocate
219 * sizeof(redisObjct) minus sizeof(redisObjectVM), so using
220 * Redis without VM active will not have any overhead. */
221} robj;
222
223/* The VM pointer structure - identifies an object in the swap file.
224 *
225 * This object is stored in place of the value
226 * object in the main key->value hash table representing a database.
227 * Note that the first fields (type, storage) are the same as the redisObject
228 * structure so that vmPointer strucuters can be accessed even when casted
229 * as redisObject structures.
230 *
231 * This is useful as we don't know if a value object is or not on disk, but we
232 * are always able to read obj->storage to check this. For vmPointer
233 * structures "type" is set to REDIS_VMPOINTER (even if without this field
234 * is still possible to check the kind of object from the value of 'storage').*/
235typedef struct vmPointer {
236 unsigned type:4;
237 unsigned storage:2; /* REDIS_VM_SWAPPED or REDIS_VM_LOADING */
238 unsigned notused:26;
239 unsigned int vtype; /* type of the object stored in the swap file */
240 off_t page; /* the page at witch the object is stored on disk */
241 off_t usedpages; /* number of pages used on disk */
242} vmpointer;
243
244/* Macro used to initalize a Redis object allocated on the stack.
245 * Note that this macro is taken near the structure definition to make sure
246 * we'll update it when the structure is changed, to avoid bugs like
247 * bug #85 introduced exactly in this way. */
248#define initStaticStringObject(_var,_ptr) do { \
249 _var.refcount = 1; \
250 _var.type = REDIS_STRING; \
251 _var.encoding = REDIS_ENCODING_RAW; \
252 _var.ptr = _ptr; \
253 _var.storage = REDIS_VM_MEMORY; \
254} while(0);
255
256typedef struct redisDb {
257 dict *dict; /* The keyspace for this DB */
258 dict *expires; /* Timeout of keys with a timeout set */
259 dict *blocking_keys; /* Keys with clients waiting for data (BLPOP) */
260 dict *io_keys; /* Keys with clients waiting for VM I/O */
261 dict *watched_keys; /* WATCHED keys for MULTI/EXEC CAS */
262 int id;
263} redisDb;
264
265/* Client MULTI/EXEC state */
266typedef struct multiCmd {
267 robj **argv;
268 int argc;
269 struct redisCommand *cmd;
270} multiCmd;
271
272typedef struct multiState {
273 multiCmd *commands; /* Array of MULTI commands */
274 int count; /* Total number of MULTI commands */
275} multiState;
276
277/* With multiplexing we need to take per-clinet state.
278 * Clients are taken in a liked list. */
279typedef struct redisClient {
280 int fd;
281 redisDb *db;
282 int dictid;
283 sds querybuf;
284 robj **argv, **mbargv;
285 int argc, mbargc;
286 int bulklen; /* bulk read len. -1 if not in bulk read mode */
287 int multibulk; /* multi bulk command format active */
288 list *reply;
289 int sentlen;
290 time_t lastinteraction; /* time of the last interaction, used for timeout */
291 int flags; /* REDIS_SLAVE | REDIS_MONITOR | REDIS_MULTI ... */
292 int slaveseldb; /* slave selected db, if this client is a slave */
293 int authenticated; /* when requirepass is non-NULL */
294 int replstate; /* replication state if this is a slave */
295 int repldbfd; /* replication DB file descriptor */
296 long repldboff; /* replication DB file offset */
297 off_t repldbsize; /* replication DB file size */
298 multiState mstate; /* MULTI/EXEC state */
299 robj **blocking_keys; /* The key we are waiting to terminate a blocking
300 * operation such as BLPOP. Otherwise NULL. */
301 int blocking_keys_num; /* Number of blocking keys */
302 time_t blockingto; /* Blocking operation timeout. If UNIX current time
303 * is >= blockingto then the operation timed out. */
304 list *io_keys; /* Keys this client is waiting to be loaded from the
305 * swap file in order to continue. */
306 list *watched_keys; /* Keys WATCHED for MULTI/EXEC CAS */
307 dict *pubsub_channels; /* channels a client is interested in (SUBSCRIBE) */
308 list *pubsub_patterns; /* patterns a client is interested in (SUBSCRIBE) */
309} redisClient;
310
311struct saveparam {
312 time_t seconds;
313 int changes;
314};
315
316struct sharedObjectsStruct {
317 robj *crlf, *ok, *err, *emptybulk, *czero, *cone, *cnegone, *pong, *space,
318 *colon, *nullbulk, *nullmultibulk, *queued,
319 *emptymultibulk, *wrongtypeerr, *nokeyerr, *syntaxerr, *sameobjecterr,
320 *outofrangeerr, *plus,
321 *select0, *select1, *select2, *select3, *select4,
322 *select5, *select6, *select7, *select8, *select9,
323 *messagebulk, *pmessagebulk, *subscribebulk, *unsubscribebulk, *mbulk3,
324 *mbulk4, *psubscribebulk, *punsubscribebulk,
325 *integers[REDIS_SHARED_INTEGERS];
326};
327
328/* Global server state structure */
329struct redisServer {
330 int port;
331 int fd;
332 redisDb *db;
333 long long dirty; /* changes to DB from the last save */
334 list *clients;
335 list *slaves, *monitors;
336 char neterr[ANET_ERR_LEN];
337 aeEventLoop *el;
338 int cronloops; /* number of times the cron function run */
339 list *objfreelist; /* A list of freed objects to avoid malloc() */
340 time_t lastsave; /* Unix time of last save succeeede */
341 /* Fields used only for stats */
342 time_t stat_starttime; /* server start time */
343 long long stat_numcommands; /* number of processed commands */
344 long long stat_numconnections; /* number of connections received */
345 long long stat_expiredkeys; /* number of expired keys */
346 /* Configuration */
347 int verbosity;
348 int glueoutputbuf;
349 int maxidletime;
350 int dbnum;
351 int daemonize;
352 int appendonly;
353 int appendfsync;
354 int no_appendfsync_on_rewrite;
355 int shutdown_asap;
356 time_t lastfsync;
357 int appendfd;
358 int appendseldb;
359 char *pidfile;
360 pid_t bgsavechildpid;
361 pid_t bgrewritechildpid;
362 sds bgrewritebuf; /* buffer taken by parent during oppend only rewrite */
363 sds aofbuf; /* AOF buffer, written before entering the event loop */
364 struct saveparam *saveparams;
365 int saveparamslen;
366 char *logfile;
367 char *bindaddr;
368 char *dbfilename;
369 char *appendfilename;
370 char *requirepass;
371 int rdbcompression;
372 int activerehashing;
373 /* Replication related */
374 int isslave;
375 char *masterauth;
376 char *masterhost;
377 int masterport;
378 redisClient *master; /* client that is master for this slave */
379 int replstate;
380 unsigned int maxclients;
381 unsigned long long maxmemory;
382 unsigned int blpop_blocked_clients;
383 unsigned int vm_blocked_clients;
384 /* Sort parameters - qsort_r() is only available under BSD so we
385 * have to take this state global, in order to pass it to sortCompare() */
386 int sort_desc;
387 int sort_alpha;
388 int sort_bypattern;
389 /* Virtual memory configuration */
390 int vm_enabled;
391 char *vm_swap_file;
392 off_t vm_page_size;
393 off_t vm_pages;
394 unsigned long long vm_max_memory;
395 /* Zip structure config */
396 size_t hash_max_zipmap_entries;
397 size_t hash_max_zipmap_value;
398 size_t list_max_ziplist_entries;
399 size_t list_max_ziplist_value;
400 /* Virtual memory state */
401 FILE *vm_fp;
402 int vm_fd;
403 off_t vm_next_page; /* Next probably empty page */
404 off_t vm_near_pages; /* Number of pages allocated sequentially */
405 unsigned char *vm_bitmap; /* Bitmap of free/used pages */
406 time_t unixtime; /* Unix time sampled every second. */
407 /* Virtual memory I/O threads stuff */
408 /* An I/O thread process an element taken from the io_jobs queue and
409 * put the result of the operation in the io_done list. While the
410 * job is being processed, it's put on io_processing queue. */
411 list *io_newjobs; /* List of VM I/O jobs yet to be processed */
412 list *io_processing; /* List of VM I/O jobs being processed */
413 list *io_processed; /* List of VM I/O jobs already processed */
414 list *io_ready_clients; /* Clients ready to be unblocked. All keys loaded */
415 pthread_mutex_t io_mutex; /* lock to access io_jobs/io_done/io_thread_job */
416 pthread_mutex_t obj_freelist_mutex; /* safe redis objects creation/free */
417 pthread_mutex_t io_swapfile_mutex; /* So we can lseek + write */
418 pthread_attr_t io_threads_attr; /* attributes for threads creation */
419 int io_active_threads; /* Number of running I/O threads */
420 int vm_max_threads; /* Max number of I/O threads running at the same time */
421 /* Our main thread is blocked on the event loop, locking for sockets ready
422 * to be read or written, so when a threaded I/O operation is ready to be
423 * processed by the main thread, the I/O thread will use a unix pipe to
424 * awake the main thread. The followings are the two pipe FDs. */
425 int io_ready_pipe_read;
426 int io_ready_pipe_write;
427 /* Virtual memory stats */
428 unsigned long long vm_stats_used_pages;
429 unsigned long long vm_stats_swapped_objects;
430 unsigned long long vm_stats_swapouts;
431 unsigned long long vm_stats_swapins;
432 /* Pubsub */
433 dict *pubsub_channels; /* Map channels to list of subscribed clients */
434 list *pubsub_patterns; /* A list of pubsub_patterns */
435 /* Misc */
436 FILE *devnull;
437 unsigned lruclock:22; /* clock incrementing every minute, for LRU */
438 unsigned lruclock_padding:10;
439};
440
441typedef struct pubsubPattern {
442 redisClient *client;
443 robj *pattern;
444} pubsubPattern;
445
446typedef void redisCommandProc(redisClient *c);
447typedef void redisVmPreloadProc(redisClient *c, struct redisCommand *cmd, int argc, robj **argv);
448struct redisCommand {
449 char *name;
450 redisCommandProc *proc;
451 int arity;
452 int flags;
453 /* Use a function to determine which keys need to be loaded
454 * in the background prior to executing this command. Takes precedence
455 * over vm_firstkey and others, ignored when NULL */
456 redisVmPreloadProc *vm_preload_proc;
457 /* What keys should be loaded in background when calling this command? */
458 int vm_firstkey; /* The first argument that's a key (0 = no keys) */
459 int vm_lastkey; /* THe last argument that's a key */
460 int vm_keystep; /* The step between first and last key */
461};
462
463struct redisFunctionSym {
464 char *name;
465 unsigned long pointer;
466};
467
468typedef struct _redisSortObject {
469 robj *obj;
470 union {
471 double score;
472 robj *cmpobj;
473 } u;
474} redisSortObject;
475
476typedef struct _redisSortOperation {
477 int type;
478 robj *pattern;
479} redisSortOperation;
480
481/* ZSETs use a specialized version of Skiplists */
482
483typedef struct zskiplistNode {
484 struct zskiplistNode **forward;
485 struct zskiplistNode *backward;
486 unsigned int *span;
487 double score;
488 robj *obj;
489} zskiplistNode;
490
491typedef struct zskiplist {
492 struct zskiplistNode *header, *tail;
493 unsigned long length;
494 int level;
495} zskiplist;
496
497typedef struct zset {
498 dict *dict;
499 zskiplist *zsl;
500} zset;
501
502/* VM threaded I/O request message */
503#define REDIS_IOJOB_LOAD 0 /* Load from disk to memory */
504#define REDIS_IOJOB_PREPARE_SWAP 1 /* Compute needed pages */
505#define REDIS_IOJOB_DO_SWAP 2 /* Swap from memory to disk */
506typedef struct iojob {
507 int type; /* Request type, REDIS_IOJOB_* */
508 redisDb *db;/* Redis database */
509 robj *key; /* This I/O request is about swapping this key */
510 robj *id; /* Unique identifier of this job:
511 this is the object to swap for REDIS_IOREQ_*_SWAP, or the
512 vmpointer objct for REDIS_IOREQ_LOAD. */
513 robj *val; /* the value to swap for REDIS_IOREQ_*_SWAP, otherwise this
514 * field is populated by the I/O thread for REDIS_IOREQ_LOAD. */
515 off_t page; /* Swap page where to read/write the object */
516 off_t pages; /* Swap pages needed to save object. PREPARE_SWAP return val */
517 int canceled; /* True if this command was canceled by blocking side of VM */
518 pthread_t thread; /* ID of the thread processing this entry */
519} iojob;
520
521/* Structure to hold list iteration abstraction. */
522typedef struct {
523 robj *subject;
524 unsigned char encoding;
525 unsigned char direction; /* Iteration direction */
526 unsigned char *zi;
527 listNode *ln;
528} listTypeIterator;
529
530/* Structure for an entry while iterating over a list. */
531typedef struct {
532 listTypeIterator *li;
533 unsigned char *zi; /* Entry in ziplist */
534 listNode *ln; /* Entry in linked list */
535} listTypeEntry;
536
537/* Structure to hold hash iteration abstration. Note that iteration over
538 * hashes involves both fields and values. Because it is possible that
539 * not both are required, store pointers in the iterator to avoid
540 * unnecessary memory allocation for fields/values. */
541typedef struct {
542 int encoding;
543 unsigned char *zi;
544 unsigned char *zk, *zv;
545 unsigned int zklen, zvlen;
546
547 dictIterator *di;
548 dictEntry *de;
549} hashTypeIterator;
550
551#define REDIS_HASH_KEY 1
552#define REDIS_HASH_VALUE 2
553
554/*-----------------------------------------------------------------------------
555 * Extern declarations
556 *----------------------------------------------------------------------------*/
557
558extern struct redisServer server;
559extern struct sharedObjectsStruct shared;
560extern dictType setDictType;
561extern dictType zsetDictType;
562extern double R_Zero, R_PosInf, R_NegInf, R_Nan;
563dictType hashDictType;
564
565/*-----------------------------------------------------------------------------
566 * Functions prototypes
567 *----------------------------------------------------------------------------*/
568
569/* networking.c -- Networking and Client related operations */
570redisClient *createClient(int fd);
571void closeTimedoutClients(void);
572void freeClient(redisClient *c);
573void resetClient(redisClient *c);
574void sendReplyToClient(aeEventLoop *el, int fd, void *privdata, int mask);
575void sendReplyToClientWritev(aeEventLoop *el, int fd, void *privdata, int mask);
576void addReply(redisClient *c, robj *obj);
577void addReplySds(redisClient *c, sds s);
578void processInputBuffer(redisClient *c);
579void acceptHandler(aeEventLoop *el, int fd, void *privdata, int mask);
580void readQueryFromClient(aeEventLoop *el, int fd, void *privdata, int mask);
581void addReplyBulk(redisClient *c, robj *obj);
582void addReplyBulkCString(redisClient *c, char *s);
583void acceptHandler(aeEventLoop *el, int fd, void *privdata, int mask);
584void addReply(redisClient *c, robj *obj);
585void addReplySds(redisClient *c, sds s);
586void addReplyDouble(redisClient *c, double d);
587void addReplyLongLong(redisClient *c, long long ll);
588void addReplyUlong(redisClient *c, unsigned long ul);
589void *dupClientReplyValue(void *o);
590
591/* List data type */
592void listTypeTryConversion(robj *subject, robj *value);
593void listTypePush(robj *subject, robj *value, int where);
594robj *listTypePop(robj *subject, int where);
595unsigned long listTypeLength(robj *subject);
596listTypeIterator *listTypeInitIterator(robj *subject, int index, unsigned char direction);
597void listTypeReleaseIterator(listTypeIterator *li);
598int listTypeNext(listTypeIterator *li, listTypeEntry *entry);
599robj *listTypeGet(listTypeEntry *entry);
600void listTypeInsert(listTypeEntry *entry, robj *value, int where);
601int listTypeEqual(listTypeEntry *entry, robj *o);
602void listTypeDelete(listTypeEntry *entry);
603void listTypeConvert(robj *subject, int enc);
604void unblockClientWaitingData(redisClient *c);
605int handleClientsWaitingListPush(redisClient *c, robj *key, robj *ele);
606void popGenericCommand(redisClient *c, int where);
607
608/* MULTI/EXEC/WATCH... */
609void unwatchAllKeys(redisClient *c);
610void initClientMultiState(redisClient *c);
611void freeClientMultiState(redisClient *c);
612void queueMultiCommand(redisClient *c, struct redisCommand *cmd);
613void touchWatchedKey(redisDb *db, robj *key);
614void touchWatchedKeysOnFlush(int dbid);
615
616/* Redis object implementation */
617void decrRefCount(void *o);
618void incrRefCount(robj *o);
619void freeStringObject(robj *o);
620void freeListObject(robj *o);
621void freeSetObject(robj *o);
622void freeZsetObject(robj *o);
623void freeHashObject(robj *o);
624robj *createObject(int type, void *ptr);
625robj *createStringObject(char *ptr, size_t len);
626robj *dupStringObject(robj *o);
627robj *tryObjectEncoding(robj *o);
628robj *getDecodedObject(robj *o);
629size_t stringObjectLen(robj *o);
630int tryFreeOneObjectFromFreelist(void);
631robj *createStringObjectFromLongLong(long long value);
632robj *createListObject(void);
633robj *createZiplistObject(void);
634robj *createSetObject(void);
635robj *createHashObject(void);
636robj *createZsetObject(void);
637int getLongFromObjectOrReply(redisClient *c, robj *o, long *target, const char *msg);
638int checkType(redisClient *c, robj *o, int type);
639int getLongLongFromObjectOrReply(redisClient *c, robj *o, long long *target, const char *msg);
640int getDoubleFromObjectOrReply(redisClient *c, robj *o, double *target, const char *msg);
641int getLongLongFromObject(robj *o, long long *target);
642char *strEncoding(int encoding);
643int compareStringObjects(robj *a, robj *b);
644int equalStringObjects(robj *a, robj *b);
645
646/* Replication */
647void replicationFeedSlaves(list *slaves, int dictid, robj **argv, int argc);
648void replicationFeedMonitors(list *monitors, int dictid, robj **argv, int argc);
649int syncWithMaster(void);
650void updateSlavesWaitingBgsave(int bgsaveerr);
651
652/* RDB persistence */
653int rdbLoad(char *filename);
654int rdbSaveBackground(char *filename);
655void rdbRemoveTempFile(pid_t childpid);
656int rdbSave(char *filename);
657int rdbSaveObject(FILE *fp, robj *o);
658off_t rdbSavedObjectPages(robj *o, FILE *fp);
659off_t rdbSavedObjectLen(robj *o, FILE *fp);
660robj *rdbLoadObject(int type, FILE *fp);
661void backgroundSaveDoneHandler(int statloc);
662
663/* AOF persistence */
664void flushAppendOnlyFile(void);
665void feedAppendOnlyFile(struct redisCommand *cmd, int dictid, robj **argv, int argc);
666void aofRemoveTempFile(pid_t childpid);
667int rewriteAppendOnlyFileBackground(void);
668int loadAppendOnlyFile(char *filename);
669void stopAppendOnly(void);
670int startAppendOnly(void);
671void backgroundRewriteDoneHandler(int statloc);
672
673/* Sorted sets data type */
674zskiplist *zslCreate(void);
675void zslFree(zskiplist *zsl);
676void zslInsert(zskiplist *zsl, double score, robj *obj);
677
678/* Core functions */
679void freeMemoryIfNeeded(void);
680int processCommand(redisClient *c);
681void setupSigSegvAction(void);
682struct redisCommand *lookupCommand(char *name);
683void call(redisClient *c, struct redisCommand *cmd);
684int prepareForShutdown();
685void redisLog(int level, const char *fmt, ...);
686void usage();
687void updateDictResizePolicy(void);
688int htNeedsResize(dict *dict);
689void oom(const char *msg);
690
691/* Virtual Memory */
692void vmInit(void);
693void vmMarkPagesFree(off_t page, off_t count);
694robj *vmLoadObject(robj *o);
695robj *vmPreviewObject(robj *o);
696int vmSwapOneObjectBlocking(void);
697int vmSwapOneObjectThreaded(void);
698int vmCanSwapOut(void);
699void vmThreadedIOCompletedJob(aeEventLoop *el, int fd, void *privdata, int mask);
700void vmCancelThreadedIOJob(robj *o);
701void lockThreadedIO(void);
702void unlockThreadedIO(void);
703int vmSwapObjectThreaded(robj *key, robj *val, redisDb *db);
704void freeIOJob(iojob *j);
705void queueIOJob(iojob *j);
706int vmWriteObjectOnSwap(robj *o, off_t page);
707robj *vmReadObjectFromSwap(off_t page, int type);
708void waitEmptyIOJobsQueue(void);
709void vmReopenSwapFile(void);
710int vmFreePage(off_t page);
711void zunionInterBlockClientOnSwappedKeys(redisClient *c, struct redisCommand *cmd, int argc, robj **argv);
712void execBlockClientOnSwappedKeys(redisClient *c, struct redisCommand *cmd, int argc, robj **argv);
713int blockClientOnSwappedKeys(redisClient *c, struct redisCommand *cmd);
714int dontWaitForSwappedKey(redisClient *c, robj *key);
715void handleClientsBlockedOnSwappedKey(redisDb *db, robj *key);
716vmpointer *vmSwapObjectBlocking(robj *val);
717
718/* Hash data type */
719void convertToRealHash(robj *o);
720void hashTypeTryConversion(robj *subject, robj **argv, int start, int end);
721void hashTypeTryObjectEncoding(robj *subject, robj **o1, robj **o2);
722robj *hashTypeGet(robj *o, robj *key);
723int hashTypeExists(robj *o, robj *key);
724int hashTypeSet(robj *o, robj *key, robj *value);
725int hashTypeDelete(robj *o, robj *key);
726unsigned long hashTypeLength(robj *o);
727hashTypeIterator *hashTypeInitIterator(robj *subject);
728void hashTypeReleaseIterator(hashTypeIterator *hi);
729int hashTypeNext(hashTypeIterator *hi);
730robj *hashTypeCurrent(hashTypeIterator *hi, int what);
731robj *hashTypeLookupWriteOrCreate(redisClient *c, robj *key);
732
733/* Pub / Sub */
734int pubsubUnsubscribeAllChannels(redisClient *c, int notify);
735int pubsubUnsubscribeAllPatterns(redisClient *c, int notify);
736void freePubsubPattern(void *p);
737int listMatchPubsubPattern(void *a, void *b);
738
739/* Utility functions */
740int stringmatchlen(const char *pattern, int patternLen,
741 const char *string, int stringLen, int nocase);
742int stringmatch(const char *pattern, const char *string, int nocase);
743long long memtoll(const char *p, int *err);
744int ll2string(char *s, size_t len, long long value);
745int isStringRepresentableAsLong(sds s, long *longval);
746
747/* Configuration */
748void loadServerConfig(char *filename);
749void appendServerSaveParams(time_t seconds, int changes);
750void resetServerSaveParams();
751
752/* db.c -- Keyspace access API */
753int removeExpire(redisDb *db, robj *key);
754int expireIfNeeded(redisDb *db, robj *key);
755int deleteIfVolatile(redisDb *db, robj *key);
756time_t getExpire(redisDb *db, robj *key);
757int setExpire(redisDb *db, robj *key, time_t when);
758robj *lookupKey(redisDb *db, robj *key);
759robj *lookupKeyRead(redisDb *db, robj *key);
760robj *lookupKeyWrite(redisDb *db, robj *key);
761robj *lookupKeyReadOrReply(redisClient *c, robj *key, robj *reply);
762robj *lookupKeyWriteOrReply(redisClient *c, robj *key, robj *reply);
763int dbAdd(redisDb *db, robj *key, robj *val);
764int dbReplace(redisDb *db, robj *key, robj *val);
765int dbExists(redisDb *db, robj *key);
766robj *dbRandomKey(redisDb *db);
767int dbDelete(redisDb *db, robj *key);
768long long emptyDb();
769int selectDb(redisClient *c, int id);
770
771/* Git SHA1 */
772char *redisGitSHA1(void);
773char *redisGitDirty(void);
774
775/* Commands prototypes */
776void authCommand(redisClient *c);
777void pingCommand(redisClient *c);
778void echoCommand(redisClient *c);
779void setCommand(redisClient *c);
780void setnxCommand(redisClient *c);
781void setexCommand(redisClient *c);
782void getCommand(redisClient *c);
783void delCommand(redisClient *c);
784void existsCommand(redisClient *c);
785void incrCommand(redisClient *c);
786void decrCommand(redisClient *c);
787void incrbyCommand(redisClient *c);
788void decrbyCommand(redisClient *c);
789void selectCommand(redisClient *c);
790void randomkeyCommand(redisClient *c);
791void keysCommand(redisClient *c);
792void dbsizeCommand(redisClient *c);
793void lastsaveCommand(redisClient *c);
794void saveCommand(redisClient *c);
795void bgsaveCommand(redisClient *c);
796void bgrewriteaofCommand(redisClient *c);
797void shutdownCommand(redisClient *c);
798void moveCommand(redisClient *c);
799void renameCommand(redisClient *c);
800void renamenxCommand(redisClient *c);
801void lpushCommand(redisClient *c);
802void rpushCommand(redisClient *c);
803void lpushxCommand(redisClient *c);
804void rpushxCommand(redisClient *c);
805void linsertCommand(redisClient *c);
806void lpopCommand(redisClient *c);
807void rpopCommand(redisClient *c);
808void llenCommand(redisClient *c);
809void lindexCommand(redisClient *c);
810void lrangeCommand(redisClient *c);
811void ltrimCommand(redisClient *c);
812void typeCommand(redisClient *c);
813void lsetCommand(redisClient *c);
814void saddCommand(redisClient *c);
815void sremCommand(redisClient *c);
816void smoveCommand(redisClient *c);
817void sismemberCommand(redisClient *c);
818void scardCommand(redisClient *c);
819void spopCommand(redisClient *c);
820void srandmemberCommand(redisClient *c);
821void sinterCommand(redisClient *c);
822void sinterstoreCommand(redisClient *c);
823void sunionCommand(redisClient *c);
824void sunionstoreCommand(redisClient *c);
825void sdiffCommand(redisClient *c);
826void sdiffstoreCommand(redisClient *c);
827void syncCommand(redisClient *c);
828void flushdbCommand(redisClient *c);
829void flushallCommand(redisClient *c);
830void sortCommand(redisClient *c);
831void lremCommand(redisClient *c);
832void rpoplpushcommand(redisClient *c);
833void infoCommand(redisClient *c);
834void mgetCommand(redisClient *c);
835void monitorCommand(redisClient *c);
836void expireCommand(redisClient *c);
837void expireatCommand(redisClient *c);
838void getsetCommand(redisClient *c);
839void ttlCommand(redisClient *c);
840void slaveofCommand(redisClient *c);
841void debugCommand(redisClient *c);
842void msetCommand(redisClient *c);
843void msetnxCommand(redisClient *c);
844void zaddCommand(redisClient *c);
845void zincrbyCommand(redisClient *c);
846void zrangeCommand(redisClient *c);
847void zrangebyscoreCommand(redisClient *c);
848void zcountCommand(redisClient *c);
849void zrevrangeCommand(redisClient *c);
850void zcardCommand(redisClient *c);
851void zremCommand(redisClient *c);
852void zscoreCommand(redisClient *c);
853void zremrangebyscoreCommand(redisClient *c);
854void multiCommand(redisClient *c);
855void execCommand(redisClient *c);
856void discardCommand(redisClient *c);
857void blpopCommand(redisClient *c);
858void brpopCommand(redisClient *c);
859void appendCommand(redisClient *c);
860void substrCommand(redisClient *c);
861void zrankCommand(redisClient *c);
862void zrevrankCommand(redisClient *c);
863void hsetCommand(redisClient *c);
864void hsetnxCommand(redisClient *c);
865void hgetCommand(redisClient *c);
866void hmsetCommand(redisClient *c);
867void hmgetCommand(redisClient *c);
868void hdelCommand(redisClient *c);
869void hlenCommand(redisClient *c);
870void zremrangebyrankCommand(redisClient *c);
871void zunionstoreCommand(redisClient *c);
872void zinterstoreCommand(redisClient *c);
873void hkeysCommand(redisClient *c);
874void hvalsCommand(redisClient *c);
875void hgetallCommand(redisClient *c);
876void hexistsCommand(redisClient *c);
877void configCommand(redisClient *c);
878void hincrbyCommand(redisClient *c);
879void subscribeCommand(redisClient *c);
880void unsubscribeCommand(redisClient *c);
881void psubscribeCommand(redisClient *c);
882void punsubscribeCommand(redisClient *c);
883void publishCommand(redisClient *c);
884void watchCommand(redisClient *c);
885void unwatchCommand(redisClient *c);
886
887#endif