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7585836e | 1 | #include "redis.h" |
2 | #include "sha1.h" | |
e108bab0 | 3 | #include "rand.h" |
7585836e | 4 | |
5 | #include <lua.h> | |
6 | #include <lauxlib.h> | |
7 | #include <lualib.h> | |
7229d60d | 8 | #include <ctype.h> |
e108bab0 | 9 | #include <math.h> |
7585836e | 10 | |
532e0f5d | 11 | char *redisProtocolToLuaType_Int(lua_State *lua, char *reply); |
12 | char *redisProtocolToLuaType_Bulk(lua_State *lua, char *reply); | |
13 | char *redisProtocolToLuaType_Status(lua_State *lua, char *reply); | |
3791000f | 14 | char *redisProtocolToLuaType_Error(lua_State *lua, char *reply); |
15 | char *redisProtocolToLuaType_MultiBulk(lua_State *lua, char *reply); | |
e108bab0 | 16 | int redis_math_random (lua_State *L); |
17 | int redis_math_randomseed (lua_State *L); | |
532e0f5d | 18 | |
19 | /* Take a Redis reply in the Redis protocol format and convert it into a | |
20 | * Lua type. Thanks to this function, and the introduction of not connected | |
21 | * clients, it is trvial to implement the redis() lua function. | |
22 | * | |
23 | * Basically we take the arguments, execute the Redis command in the context | |
24 | * of a non connected client, then take the generated reply and convert it | |
25 | * into a suitable Lua type. With this trick the scripting feature does not | |
26 | * need the introduction of a full Redis internals API. Basically the script | |
27 | * is like a normal client that bypasses all the slow I/O paths. | |
28 | * | |
29 | * Note: in this function we do not do any sanity check as the reply is | |
30 | * generated by Redis directly. This allows use to go faster. | |
31 | * The reply string can be altered during the parsing as it is discared | |
32 | * after the conversion is completed. | |
33 | * | |
34 | * Errors are returned as a table with a single 'err' field set to the | |
35 | * error string. | |
36 | */ | |
37 | ||
38 | char *redisProtocolToLuaType(lua_State *lua, char* reply) { | |
39 | char *p = reply; | |
40 | ||
41 | switch(*p) { | |
42 | case ':': | |
43 | p = redisProtocolToLuaType_Int(lua,reply); | |
44 | break; | |
45 | case '$': | |
46 | p = redisProtocolToLuaType_Bulk(lua,reply); | |
47 | break; | |
48 | case '+': | |
49 | p = redisProtocolToLuaType_Status(lua,reply); | |
50 | break; | |
3791000f | 51 | case '-': |
52 | p = redisProtocolToLuaType_Error(lua,reply); | |
53 | break; | |
54 | case '*': | |
55 | p = redisProtocolToLuaType_MultiBulk(lua,reply); | |
56 | break; | |
532e0f5d | 57 | } |
58 | return p; | |
59 | } | |
60 | ||
61 | char *redisProtocolToLuaType_Int(lua_State *lua, char *reply) { | |
62 | char *p = strchr(reply+1,'\r'); | |
63 | long long value; | |
64 | ||
65 | string2ll(reply+1,p-reply-1,&value); | |
66 | lua_pushnumber(lua,(lua_Number)value); | |
67 | return p+2; | |
68 | } | |
69 | ||
70 | char *redisProtocolToLuaType_Bulk(lua_State *lua, char *reply) { | |
71 | char *p = strchr(reply+1,'\r'); | |
72 | long long bulklen; | |
73 | ||
74 | string2ll(reply+1,p-reply-1,&bulklen); | |
379789cc | 75 | if (bulklen == -1) { |
82c6b825 | 76 | lua_pushboolean(lua,0); |
532e0f5d | 77 | return p+2; |
78 | } else { | |
79 | lua_pushlstring(lua,p+2,bulklen); | |
80 | return p+2+bulklen+2; | |
81 | } | |
82 | } | |
83 | ||
84 | char *redisProtocolToLuaType_Status(lua_State *lua, char *reply) { | |
85 | char *p = strchr(reply+1,'\r'); | |
86 | ||
0d916763 | 87 | lua_newtable(lua); |
88 | lua_pushstring(lua,"ok"); | |
532e0f5d | 89 | lua_pushlstring(lua,reply+1,p-reply-1); |
0d916763 | 90 | lua_settable(lua,-3); |
532e0f5d | 91 | return p+2; |
92 | } | |
93 | ||
3791000f | 94 | char *redisProtocolToLuaType_Error(lua_State *lua, char *reply) { |
95 | char *p = strchr(reply+1,'\r'); | |
96 | ||
97 | lua_newtable(lua); | |
98 | lua_pushstring(lua,"err"); | |
99 | lua_pushlstring(lua,reply+1,p-reply-1); | |
100 | lua_settable(lua,-3); | |
101 | return p+2; | |
102 | } | |
103 | ||
104 | char *redisProtocolToLuaType_MultiBulk(lua_State *lua, char *reply) { | |
105 | char *p = strchr(reply+1,'\r'); | |
106 | long long mbulklen; | |
107 | int j = 0; | |
108 | ||
3791000f | 109 | string2ll(reply+1,p-reply-1,&mbulklen); |
110 | p += 2; | |
111 | if (mbulklen == -1) { | |
82c6b825 | 112 | lua_pushboolean(lua,0); |
3791000f | 113 | return p; |
114 | } | |
3791000f | 115 | lua_newtable(lua); |
116 | for (j = 0; j < mbulklen; j++) { | |
10a6da7a | 117 | lua_pushnumber(lua,j+1); |
3791000f | 118 | p = redisProtocolToLuaType(lua,p); |
119 | lua_settable(lua,-3); | |
120 | } | |
121 | return p; | |
122 | } | |
123 | ||
379789cc | 124 | void luaPushError(lua_State *lua, char *error) { |
125 | lua_newtable(lua); | |
126 | lua_pushstring(lua,"err"); | |
127 | lua_pushstring(lua, error); | |
128 | lua_settable(lua,-3); | |
129 | } | |
130 | ||
0f1d64ca | 131 | int luaRedisCommand(lua_State *lua) { |
132 | int j, argc = lua_gettop(lua); | |
133 | struct redisCommand *cmd; | |
134 | robj **argv; | |
135 | redisClient *c = server.lua_client; | |
136 | sds reply; | |
137 | ||
532e0f5d | 138 | /* Build the arguments vector */ |
0f1d64ca | 139 | argv = zmalloc(sizeof(robj*)*argc); |
379789cc | 140 | for (j = 0; j < argc; j++) { |
141 | if (!lua_isstring(lua,j+1)) break; | |
532e0f5d | 142 | argv[j] = createStringObject((char*)lua_tostring(lua,j+1), |
143 | lua_strlen(lua,j+1)); | |
379789cc | 144 | } |
145 | ||
146 | /* Check if one of the arguments passed by the Lua script | |
147 | * is not a string or an integer (lua_isstring() return true for | |
148 | * integers as well). */ | |
149 | if (j != argc) { | |
150 | j--; | |
151 | while (j >= 0) { | |
152 | decrRefCount(argv[j]); | |
153 | j--; | |
154 | } | |
155 | zfree(argv); | |
156 | luaPushError(lua, | |
157 | "Lua redis() command arguments must be strings or integers"); | |
158 | return 1; | |
159 | } | |
0f1d64ca | 160 | |
161 | /* Command lookup */ | |
162 | cmd = lookupCommand(argv[0]->ptr); | |
3791000f | 163 | if (!cmd || ((cmd->arity > 0 && cmd->arity != argc) || |
164 | (argc < -cmd->arity))) | |
165 | { | |
532e0f5d | 166 | for (j = 0; j < argc; j++) decrRefCount(argv[j]); |
0f1d64ca | 167 | zfree(argv); |
3791000f | 168 | if (cmd) |
379789cc | 169 | luaPushError(lua, |
3791000f | 170 | "Wrong number of args calling Redis command From Lua script"); |
171 | else | |
379789cc | 172 | luaPushError(lua,"Unknown Redis command called from Lua script"); |
532e0f5d | 173 | return 1; |
0f1d64ca | 174 | } |
532e0f5d | 175 | |
0f1d64ca | 176 | /* Run the command in the context of a fake client */ |
177 | c->argv = argv; | |
178 | c->argc = argc; | |
179 | cmd->proc(c); | |
180 | ||
181 | /* Convert the result of the Redis command into a suitable Lua type. | |
182 | * The first thing we need is to create a single string from the client | |
183 | * output buffers. */ | |
184 | reply = sdsempty(); | |
185 | if (c->bufpos) { | |
7156f43c | 186 | reply = sdscatlen(reply,c->buf,c->bufpos); |
0f1d64ca | 187 | c->bufpos = 0; |
188 | } | |
189 | while(listLength(c->reply)) { | |
190 | robj *o = listNodeValue(listFirst(c->reply)); | |
191 | ||
09ab5591 | 192 | reply = sdscatlen(reply,o->ptr,sdslen(o->ptr)); |
0f1d64ca | 193 | listDelNode(c->reply,listFirst(c->reply)); |
194 | } | |
532e0f5d | 195 | redisProtocolToLuaType(lua,reply); |
7156f43c | 196 | sdsfree(reply); |
0f1d64ca | 197 | |
198 | /* Clean up. Command code may have changed argv/argc so we use the | |
199 | * argv/argc of the client instead of the local variables. */ | |
200 | for (j = 0; j < c->argc; j++) | |
201 | decrRefCount(c->argv[j]); | |
202 | zfree(c->argv); | |
203 | ||
204 | return 1; | |
205 | } | |
206 | ||
288f811f | 207 | int luaLogCommand(lua_State *lua) { |
208 | int j, argc = lua_gettop(lua); | |
209 | int level; | |
210 | sds log; | |
211 | ||
212 | if (argc < 2) { | |
213 | luaPushError(lua, "redis.log() requires two arguments or more."); | |
214 | return 1; | |
215 | } else if (!lua_isnumber(lua,-argc)) { | |
e927a246 | 216 | luaPushError(lua, "First argument must be a number (log level)."); |
288f811f | 217 | return 1; |
218 | } | |
219 | level = lua_tonumber(lua,-argc); | |
e927a246 | 220 | if (level < REDIS_DEBUG || level > REDIS_WARNING) { |
288f811f | 221 | luaPushError(lua, "Invalid debug level."); |
222 | return 1; | |
223 | } | |
224 | ||
225 | /* Glue together all the arguments */ | |
226 | log = sdsempty(); | |
227 | for (j = 1; j < argc; j++) { | |
228 | size_t len; | |
229 | char *s; | |
230 | ||
231 | s = (char*)lua_tolstring(lua,(-argc)+j,&len); | |
232 | if (s) { | |
233 | if (j != 1) log = sdscatlen(log," ",1); | |
234 | log = sdscatlen(log,s,len); | |
235 | } | |
236 | } | |
237 | redisLogRaw(level,log); | |
238 | sdsfree(log); | |
239 | return 0; | |
240 | } | |
241 | ||
eeffcf38 | 242 | void luaMaskCountHook(lua_State *lua, lua_Debug *ar) { |
243 | long long elapsed; | |
244 | REDIS_NOTUSED(ar); | |
245 | ||
eeffcf38 | 246 | elapsed = (ustime()/1000) - server.lua_time_start; |
247 | if (elapsed >= server.lua_time_limit) { | |
87c21924 | 248 | redisLog(REDIS_NOTICE,"Lua script aborted for max execution time after %lld milliseconds of running time.",elapsed); |
249 | lua_pushstring(lua,"Script aborted for max execution time."); | |
eeffcf38 | 250 | lua_error(lua); |
eeffcf38 | 251 | } |
252 | } | |
253 | ||
7585836e | 254 | void scriptingInit(void) { |
255 | lua_State *lua = lua_open(); | |
256 | luaL_openlibs(lua); | |
0f1d64ca | 257 | |
4dd444bb | 258 | /* Initialize a dictionary we use to map SHAs to scripts. |
259 | * This is useful for replication, as we need to replicate EVALSHA | |
260 | * as EVAL, so we need to remember the associated script. */ | |
261 | server.lua_scripts = dictCreate(&dbDictType,NULL); | |
262 | ||
288f811f | 263 | /* Register the redis commands table and fields */ |
264 | lua_newtable(lua); | |
265 | ||
266 | /* redis.call */ | |
267 | lua_pushstring(lua,"call"); | |
0f1d64ca | 268 | lua_pushcfunction(lua,luaRedisCommand); |
288f811f | 269 | lua_settable(lua,-3); |
270 | ||
271 | /* redis.log and log levels. */ | |
272 | lua_pushstring(lua,"log"); | |
273 | lua_pushcfunction(lua,luaLogCommand); | |
274 | lua_settable(lua,-3); | |
275 | ||
276 | lua_pushstring(lua,"LOG_DEBUG"); | |
277 | lua_pushnumber(lua,REDIS_DEBUG); | |
278 | lua_settable(lua,-3); | |
279 | ||
280 | lua_pushstring(lua,"LOG_VERBOSE"); | |
281 | lua_pushnumber(lua,REDIS_VERBOSE); | |
282 | lua_settable(lua,-3); | |
283 | ||
284 | lua_pushstring(lua,"LOG_NOTICE"); | |
285 | lua_pushnumber(lua,REDIS_NOTICE); | |
286 | lua_settable(lua,-3); | |
287 | ||
288 | lua_pushstring(lua,"LOG_WARNING"); | |
289 | lua_pushnumber(lua,REDIS_WARNING); | |
290 | lua_settable(lua,-3); | |
291 | ||
292 | /* Finally set the table as 'redis' global var. */ | |
00b7541b | 293 | lua_setglobal(lua,"redis"); |
0f1d64ca | 294 | |
e108bab0 | 295 | /* Replace math.random and math.randomseed with our implementations. */ |
296 | lua_getglobal(lua,"math"); | |
297 | ||
298 | lua_pushstring(lua,"random"); | |
299 | lua_pushcfunction(lua,redis_math_random); | |
300 | lua_settable(lua,-3); | |
301 | ||
302 | lua_pushstring(lua,"randomseed"); | |
303 | lua_pushcfunction(lua,redis_math_randomseed); | |
304 | lua_settable(lua,-3); | |
305 | ||
306 | lua_setglobal(lua,"math"); | |
307 | ||
0f1d64ca | 308 | /* Create the (non connected) client that we use to execute Redis commands |
309 | * inside the Lua interpreter */ | |
310 | server.lua_client = createClient(-1); | |
7156f43c | 311 | server.lua_client->flags |= REDIS_LUA_CLIENT; |
0f1d64ca | 312 | |
7585836e | 313 | server.lua = lua; |
314 | } | |
315 | ||
316 | /* Hash the scripit into a SHA1 digest. We use this as Lua function name. | |
317 | * Digest should point to a 41 bytes buffer: 40 for SHA1 converted into an | |
318 | * hexadecimal number, plus 1 byte for null term. */ | |
319 | void hashScript(char *digest, char *script, size_t len) { | |
320 | SHA1_CTX ctx; | |
321 | unsigned char hash[20]; | |
322 | char *cset = "0123456789abcdef"; | |
323 | int j; | |
324 | ||
325 | SHA1Init(&ctx); | |
326 | SHA1Update(&ctx,(unsigned char*)script,len); | |
327 | SHA1Final(hash,&ctx); | |
328 | ||
329 | for (j = 0; j < 20; j++) { | |
330 | digest[j*2] = cset[((hash[j]&0xF0)>>4)]; | |
331 | digest[j*2+1] = cset[(hash[j]&0xF)]; | |
332 | } | |
333 | digest[40] = '\0'; | |
334 | } | |
335 | ||
336 | void luaReplyToRedisReply(redisClient *c, lua_State *lua) { | |
82c6b825 | 337 | int t = lua_type(lua,-1); |
7585836e | 338 | |
339 | switch(t) { | |
340 | case LUA_TSTRING: | |
82c6b825 | 341 | addReplyBulkCBuffer(c,(char*)lua_tostring(lua,-1),lua_strlen(lua,-1)); |
7585836e | 342 | break; |
343 | case LUA_TBOOLEAN: | |
82c6b825 | 344 | addReply(c,lua_toboolean(lua,-1) ? shared.cone : shared.nullbulk); |
7585836e | 345 | break; |
346 | case LUA_TNUMBER: | |
82c6b825 | 347 | addReplyLongLong(c,(long long)lua_tonumber(lua,-1)); |
7585836e | 348 | break; |
532e0f5d | 349 | case LUA_TTABLE: |
0d916763 | 350 | /* We need to check if it is an array, an error, or a status reply. |
351 | * Error are returned as a single element table with 'err' field. | |
352 | * Status replies are returned as single elment table with 'ok' field */ | |
532e0f5d | 353 | lua_pushstring(lua,"err"); |
354 | lua_gettable(lua,-2); | |
355 | t = lua_type(lua,-1); | |
356 | if (t == LUA_TSTRING) { | |
3bb818df | 357 | sds err = sdsnew(lua_tostring(lua,-1)); |
358 | sdsmapchars(err,"\r\n"," ",2); | |
359 | addReplySds(c,sdscatprintf(sdsempty(),"-%s\r\n",err)); | |
360 | sdsfree(err); | |
0d916763 | 361 | lua_pop(lua,2); |
362 | return; | |
363 | } | |
364 | ||
365 | lua_pop(lua,1); | |
366 | lua_pushstring(lua,"ok"); | |
367 | lua_gettable(lua,-2); | |
368 | t = lua_type(lua,-1); | |
369 | if (t == LUA_TSTRING) { | |
3bb818df | 370 | sds ok = sdsnew(lua_tostring(lua,-1)); |
371 | sdsmapchars(ok,"\r\n"," ",2); | |
372 | addReplySds(c,sdscatprintf(sdsempty(),"+%s\r\n",ok)); | |
373 | sdsfree(ok); | |
532e0f5d | 374 | lua_pop(lua,1); |
375 | } else { | |
376 | void *replylen = addDeferredMultiBulkLength(c); | |
377 | int j = 1, mbulklen = 0; | |
378 | ||
0d916763 | 379 | lua_pop(lua,1); /* Discard the 'ok' field value we popped */ |
532e0f5d | 380 | while(1) { |
381 | lua_pushnumber(lua,j++); | |
382 | lua_gettable(lua,-2); | |
383 | t = lua_type(lua,-1); | |
384 | if (t == LUA_TNIL) { | |
385 | lua_pop(lua,1); | |
386 | break; | |
532e0f5d | 387 | } |
82c6b825 | 388 | luaReplyToRedisReply(c, lua); |
389 | mbulklen++; | |
532e0f5d | 390 | } |
391 | setDeferredMultiBulkLength(c,replylen,mbulklen); | |
392 | } | |
393 | break; | |
7585836e | 394 | default: |
395 | addReply(c,shared.nullbulk); | |
396 | } | |
397 | lua_pop(lua,1); | |
398 | } | |
399 | ||
4ae5b5e1 | 400 | /* Set an array of Redis String Objects as a Lua array (table) stored into a |
401 | * global variable. */ | |
402 | void luaSetGlobalArray(lua_State *lua, char *var, robj **elev, int elec) { | |
403 | int j; | |
404 | ||
405 | lua_newtable(lua); | |
406 | for (j = 0; j < elec; j++) { | |
407 | lua_pushlstring(lua,(char*)elev[j]->ptr,sdslen(elev[j]->ptr)); | |
408 | lua_rawseti(lua,-2,j+1); | |
409 | } | |
410 | lua_setglobal(lua,var); | |
411 | } | |
412 | ||
7229d60d | 413 | void evalGenericCommand(redisClient *c, int evalsha) { |
7585836e | 414 | lua_State *lua = server.lua; |
415 | char funcname[43]; | |
4ae5b5e1 | 416 | long long numkeys; |
417 | ||
e108bab0 | 418 | /* We want the same PRNG sequence at every call so that our PRNG is |
419 | * not affected by external state. */ | |
420 | redisSrand48(0); | |
421 | ||
4ae5b5e1 | 422 | /* Get the number of arguments that are keys */ |
423 | if (getLongLongFromObjectOrReply(c,c->argv[2],&numkeys,NULL) != REDIS_OK) | |
424 | return; | |
425 | if (numkeys > (c->argc - 3)) { | |
426 | addReplyError(c,"Number of keys can't be greater than number of args"); | |
427 | return; | |
428 | } | |
7585836e | 429 | |
430 | /* We obtain the script SHA1, then check if this function is already | |
431 | * defined into the Lua state */ | |
432 | funcname[0] = 'f'; | |
433 | funcname[1] = '_'; | |
7229d60d | 434 | if (!evalsha) { |
435 | /* Hash the code if this is an EVAL call */ | |
436 | hashScript(funcname+2,c->argv[1]->ptr,sdslen(c->argv[1]->ptr)); | |
437 | } else { | |
438 | /* We already have the SHA if it is a EVALSHA */ | |
439 | int j; | |
440 | char *sha = c->argv[1]->ptr; | |
441 | ||
442 | for (j = 0; j < 40; j++) | |
443 | funcname[j+2] = tolower(sha[j]); | |
444 | funcname[42] = '\0'; | |
445 | } | |
446 | ||
7585836e | 447 | lua_getglobal(lua, funcname); |
448 | if (lua_isnil(lua,1)) { | |
7229d60d | 449 | sds funcdef; |
450 | ||
451 | /* Function not defined... let's define it if we have the | |
452 | * body of the funciton. If this is an EVALSHA call we can just | |
453 | * return an error. */ | |
454 | if (evalsha) { | |
455 | addReply(c, shared.noscripterr); | |
456 | lua_pop(lua,1); /* remove the nil from the stack */ | |
457 | return; | |
458 | } | |
459 | funcdef = sdsempty(); | |
7585836e | 460 | |
461 | lua_pop(lua,1); /* remove the nil from the stack */ | |
462 | funcdef = sdscat(funcdef,"function "); | |
463 | funcdef = sdscatlen(funcdef,funcname,42); | |
464 | funcdef = sdscatlen(funcdef," ()\n",4); | |
465 | funcdef = sdscatlen(funcdef,c->argv[1]->ptr,sdslen(c->argv[1]->ptr)); | |
466 | funcdef = sdscatlen(funcdef,"\nend\n",5); | |
379789cc | 467 | /* printf("Defining:\n%s\n",funcdef); */ |
7585836e | 468 | |
469 | if (luaL_loadbuffer(lua,funcdef,sdslen(funcdef),"func definition")) { | |
470 | addReplyErrorFormat(c,"Error compiling script (new function): %s\n", | |
471 | lua_tostring(lua,-1)); | |
472 | lua_pop(lua,1); | |
7156f43c | 473 | sdsfree(funcdef); |
7585836e | 474 | return; |
475 | } | |
7156f43c | 476 | sdsfree(funcdef); |
7585836e | 477 | if (lua_pcall(lua,0,0,0)) { |
478 | addReplyErrorFormat(c,"Error running script (new function): %s\n", | |
479 | lua_tostring(lua,-1)); | |
480 | lua_pop(lua,1); | |
481 | return; | |
482 | } | |
483 | lua_getglobal(lua, funcname); | |
4dd444bb | 484 | |
485 | /* We also save a SHA1 -> Original script map in a dictionary | |
486 | * so that we can replicate / write in the AOF all the | |
487 | * EVALSHA commands as EVAL using the original script. */ | |
488 | { | |
489 | int retval = dictAdd(server.lua_scripts, | |
490 | sdsnewlen(funcname+2,40),c->argv[1]); | |
491 | redisAssert(retval == DICT_OK); | |
492 | incrRefCount(c->argv[1]); | |
493 | } | |
7585836e | 494 | } |
4ae5b5e1 | 495 | |
496 | /* Populate the argv and keys table accordingly to the arguments that | |
497 | * EVAL received. */ | |
498 | luaSetGlobalArray(lua,"KEYS",c->argv+3,numkeys); | |
499 | luaSetGlobalArray(lua,"ARGV",c->argv+3+numkeys,c->argc-3-numkeys); | |
c2a7dd85 | 500 | |
501 | /* Select the right DB in the context of the Lua client */ | |
502 | selectDb(server.lua_client,c->db->id); | |
7585836e | 503 | |
da386cdf | 504 | /* Set an hook in order to be able to stop the script execution if it |
505 | * is running for too much time. | |
506 | * We set the hook only if the time limit is enabled as the hook will | |
507 | * make the Lua script execution slower. */ | |
508 | if (server.lua_time_limit > 0) { | |
509 | lua_sethook(lua,luaMaskCountHook,LUA_MASKCOUNT,100000); | |
510 | server.lua_time_start = ustime()/1000; | |
511 | } else { | |
512 | lua_sethook(lua,luaMaskCountHook,0,0); | |
513 | } | |
514 | ||
7585836e | 515 | /* At this point whatever this script was never seen before or if it was |
516 | * already defined, we can call it. We have zero arguments and expect | |
517 | * a single return value. */ | |
518 | if (lua_pcall(lua,0,1,0)) { | |
c2a7dd85 | 519 | selectDb(c,server.lua_client->db->id); /* set DB ID from Lua client */ |
7585836e | 520 | addReplyErrorFormat(c,"Error running script (call to %s): %s\n", |
521 | funcname, lua_tostring(lua,-1)); | |
522 | lua_pop(lua,1); | |
40531be0 | 523 | lua_gc(lua,LUA_GCCOLLECT,0); |
7585836e | 524 | return; |
525 | } | |
c2a7dd85 | 526 | selectDb(c,server.lua_client->db->id); /* set DB ID from Lua client */ |
7585836e | 527 | luaReplyToRedisReply(c,lua); |
40531be0 | 528 | lua_gc(lua,LUA_GCSTEP,1); |
4dd444bb | 529 | |
530 | /* If we have slaves attached we want to replicate this command as | |
531 | * EVAL instead of EVALSHA. We do this also in the AOF as currently there | |
532 | * is no easy way to propagate a command in a different way in the AOF | |
533 | * and in the replication link. | |
534 | * | |
535 | * IMPROVEMENT POSSIBLE: | |
536 | * 1) Replicate this command as EVALSHA in the AOF. | |
537 | * 2) Remember what slave already received a given script, and replicate | |
538 | * the EVALSHA against this slaves when possible. | |
539 | */ | |
540 | if (evalsha) { | |
541 | robj *script = dictFetchValue(server.lua_scripts,c->argv[1]->ptr); | |
542 | ||
543 | redisAssert(script != NULL); | |
544 | rewriteClientCommandArgument(c,0, | |
545 | resetRefCount(createStringObject("EVAL",4))); | |
546 | rewriteClientCommandArgument(c,1,script); | |
547 | } | |
7585836e | 548 | } |
7229d60d | 549 | |
550 | void evalCommand(redisClient *c) { | |
551 | evalGenericCommand(c,0); | |
552 | } | |
553 | ||
554 | void evalShaCommand(redisClient *c) { | |
555 | if (sdslen(c->argv[1]->ptr) != 40) { | |
556 | /* We know that a match is not possible if the provided SHA is | |
557 | * not the right length. So we return an error ASAP, this way | |
558 | * evalGenericCommand() can be implemented without string length | |
559 | * sanity check */ | |
560 | addReply(c, shared.noscripterr); | |
561 | return; | |
562 | } | |
563 | evalGenericCommand(c,1); | |
564 | } | |
e108bab0 | 565 | |
566 | /* We replace math.random() with our implementation that is not affected | |
567 | * by specific libc random() implementations and will output the same sequence | |
568 | * (for the same seed) in every arch. */ | |
569 | ||
570 | /* The following implementation is the one shipped with Lua itself but with | |
571 | * rand() replaced by redisLrand48(). */ | |
572 | int redis_math_random (lua_State *L) { | |
573 | /* the `%' avoids the (rare) case of r==1, and is needed also because on | |
574 | some systems (SunOS!) `rand()' may return a value larger than RAND_MAX */ | |
575 | lua_Number r = (lua_Number)(redisLrand48()%REDIS_LRAND48_MAX) / | |
576 | (lua_Number)REDIS_LRAND48_MAX; | |
577 | switch (lua_gettop(L)) { /* check number of arguments */ | |
578 | case 0: { /* no arguments */ | |
579 | lua_pushnumber(L, r); /* Number between 0 and 1 */ | |
580 | break; | |
581 | } | |
582 | case 1: { /* only upper limit */ | |
583 | int u = luaL_checkint(L, 1); | |
584 | luaL_argcheck(L, 1<=u, 1, "interval is empty"); | |
585 | lua_pushnumber(L, floor(r*u)+1); /* int between 1 and `u' */ | |
586 | break; | |
587 | } | |
588 | case 2: { /* lower and upper limits */ | |
589 | int l = luaL_checkint(L, 1); | |
590 | int u = luaL_checkint(L, 2); | |
591 | luaL_argcheck(L, l<=u, 2, "interval is empty"); | |
592 | lua_pushnumber(L, floor(r*(u-l+1))+l); /* int between `l' and `u' */ | |
593 | break; | |
594 | } | |
595 | default: return luaL_error(L, "wrong number of arguments"); | |
596 | } | |
597 | return 1; | |
598 | } | |
599 | ||
600 | int redis_math_randomseed (lua_State *L) { | |
601 | redisSrand48(luaL_checkint(L, 1)); | |
602 | return 0; | |
603 | } |