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e2641e09 | 1 | #include "redis.h" |
2 | ||
3 | #include <math.h> | |
4 | ||
5 | /*----------------------------------------------------------------------------- | |
6 | * Sorted set API | |
7 | *----------------------------------------------------------------------------*/ | |
8 | ||
9 | /* ZSETs are ordered sets using two data structures to hold the same elements | |
10 | * in order to get O(log(N)) INSERT and REMOVE operations into a sorted | |
11 | * data structure. | |
12 | * | |
13 | * The elements are added to an hash table mapping Redis objects to scores. | |
14 | * At the same time the elements are added to a skip list mapping scores | |
15 | * to Redis objects (so objects are sorted by scores in this "view"). */ | |
16 | ||
17 | /* This skiplist implementation is almost a C translation of the original | |
18 | * algorithm described by William Pugh in "Skip Lists: A Probabilistic | |
19 | * Alternative to Balanced Trees", modified in three ways: | |
20 | * a) this implementation allows for repeated values. | |
21 | * b) the comparison is not just by key (our 'score') but by satellite data. | |
22 | * c) there is a back pointer, so it's a doubly linked list with the back | |
23 | * pointers being only at "level 1". This allows to traverse the list | |
24 | * from tail to head, useful for ZREVRANGE. */ | |
25 | ||
26 | zskiplistNode *zslCreateNode(int level, double score, robj *obj) { | |
2159782b | 27 | zskiplistNode *zn = zmalloc(sizeof(*zn)+level*sizeof(struct zskiplistLevel)); |
e2641e09 | 28 | zn->score = score; |
29 | zn->obj = obj; | |
30 | return zn; | |
31 | } | |
32 | ||
33 | zskiplist *zslCreate(void) { | |
34 | int j; | |
35 | zskiplist *zsl; | |
36 | ||
37 | zsl = zmalloc(sizeof(*zsl)); | |
38 | zsl->level = 1; | |
39 | zsl->length = 0; | |
40 | zsl->header = zslCreateNode(ZSKIPLIST_MAXLEVEL,0,NULL); | |
41 | for (j = 0; j < ZSKIPLIST_MAXLEVEL; j++) { | |
2159782b PN |
42 | zsl->header->level[j].forward = NULL; |
43 | zsl->header->level[j].span = 0; | |
e2641e09 | 44 | } |
45 | zsl->header->backward = NULL; | |
46 | zsl->tail = NULL; | |
47 | return zsl; | |
48 | } | |
49 | ||
50 | void zslFreeNode(zskiplistNode *node) { | |
51 | decrRefCount(node->obj); | |
e2641e09 | 52 | zfree(node); |
53 | } | |
54 | ||
55 | void zslFree(zskiplist *zsl) { | |
2159782b | 56 | zskiplistNode *node = zsl->header->level[0].forward, *next; |
e2641e09 | 57 | |
e2641e09 | 58 | zfree(zsl->header); |
59 | while(node) { | |
2159782b | 60 | next = node->level[0].forward; |
e2641e09 | 61 | zslFreeNode(node); |
62 | node = next; | |
63 | } | |
64 | zfree(zsl); | |
65 | } | |
66 | ||
67 | int zslRandomLevel(void) { | |
68 | int level = 1; | |
69 | while ((random()&0xFFFF) < (ZSKIPLIST_P * 0xFFFF)) | |
70 | level += 1; | |
71 | return (level<ZSKIPLIST_MAXLEVEL) ? level : ZSKIPLIST_MAXLEVEL; | |
72 | } | |
73 | ||
69ef89f2 | 74 | zskiplistNode *zslInsert(zskiplist *zsl, double score, robj *obj) { |
e2641e09 | 75 | zskiplistNode *update[ZSKIPLIST_MAXLEVEL], *x; |
76 | unsigned int rank[ZSKIPLIST_MAXLEVEL]; | |
77 | int i, level; | |
78 | ||
79 | x = zsl->header; | |
80 | for (i = zsl->level-1; i >= 0; i--) { | |
81 | /* store rank that is crossed to reach the insert position */ | |
82 | rank[i] = i == (zsl->level-1) ? 0 : rank[i+1]; | |
2159782b PN |
83 | while (x->level[i].forward && |
84 | (x->level[i].forward->score < score || | |
85 | (x->level[i].forward->score == score && | |
86 | compareStringObjects(x->level[i].forward->obj,obj) < 0))) { | |
87 | rank[i] += x->level[i].span; | |
88 | x = x->level[i].forward; | |
e2641e09 | 89 | } |
90 | update[i] = x; | |
91 | } | |
92 | /* we assume the key is not already inside, since we allow duplicated | |
93 | * scores, and the re-insertion of score and redis object should never | |
94 | * happpen since the caller of zslInsert() should test in the hash table | |
95 | * if the element is already inside or not. */ | |
96 | level = zslRandomLevel(); | |
97 | if (level > zsl->level) { | |
98 | for (i = zsl->level; i < level; i++) { | |
99 | rank[i] = 0; | |
100 | update[i] = zsl->header; | |
2159782b | 101 | update[i]->level[i].span = zsl->length; |
e2641e09 | 102 | } |
103 | zsl->level = level; | |
104 | } | |
105 | x = zslCreateNode(level,score,obj); | |
106 | for (i = 0; i < level; i++) { | |
2159782b PN |
107 | x->level[i].forward = update[i]->level[i].forward; |
108 | update[i]->level[i].forward = x; | |
e2641e09 | 109 | |
110 | /* update span covered by update[i] as x is inserted here */ | |
2159782b PN |
111 | x->level[i].span = update[i]->level[i].span - (rank[0] - rank[i]); |
112 | update[i]->level[i].span = (rank[0] - rank[i]) + 1; | |
e2641e09 | 113 | } |
114 | ||
115 | /* increment span for untouched levels */ | |
116 | for (i = level; i < zsl->level; i++) { | |
2159782b | 117 | update[i]->level[i].span++; |
e2641e09 | 118 | } |
119 | ||
120 | x->backward = (update[0] == zsl->header) ? NULL : update[0]; | |
2159782b PN |
121 | if (x->level[0].forward) |
122 | x->level[0].forward->backward = x; | |
e2641e09 | 123 | else |
124 | zsl->tail = x; | |
125 | zsl->length++; | |
69ef89f2 | 126 | return x; |
e2641e09 | 127 | } |
128 | ||
129 | /* Internal function used by zslDelete, zslDeleteByScore and zslDeleteByRank */ | |
130 | void zslDeleteNode(zskiplist *zsl, zskiplistNode *x, zskiplistNode **update) { | |
131 | int i; | |
132 | for (i = 0; i < zsl->level; i++) { | |
2159782b PN |
133 | if (update[i]->level[i].forward == x) { |
134 | update[i]->level[i].span += x->level[i].span - 1; | |
135 | update[i]->level[i].forward = x->level[i].forward; | |
e2641e09 | 136 | } else { |
2159782b | 137 | update[i]->level[i].span -= 1; |
e2641e09 | 138 | } |
139 | } | |
2159782b PN |
140 | if (x->level[0].forward) { |
141 | x->level[0].forward->backward = x->backward; | |
e2641e09 | 142 | } else { |
143 | zsl->tail = x->backward; | |
144 | } | |
2159782b | 145 | while(zsl->level > 1 && zsl->header->level[zsl->level-1].forward == NULL) |
e2641e09 | 146 | zsl->level--; |
147 | zsl->length--; | |
148 | } | |
149 | ||
150 | /* Delete an element with matching score/object from the skiplist. */ | |
151 | int zslDelete(zskiplist *zsl, double score, robj *obj) { | |
152 | zskiplistNode *update[ZSKIPLIST_MAXLEVEL], *x; | |
153 | int i; | |
154 | ||
155 | x = zsl->header; | |
156 | for (i = zsl->level-1; i >= 0; i--) { | |
2159782b PN |
157 | while (x->level[i].forward && |
158 | (x->level[i].forward->score < score || | |
159 | (x->level[i].forward->score == score && | |
160 | compareStringObjects(x->level[i].forward->obj,obj) < 0))) | |
161 | x = x->level[i].forward; | |
e2641e09 | 162 | update[i] = x; |
163 | } | |
164 | /* We may have multiple elements with the same score, what we need | |
165 | * is to find the element with both the right score and object. */ | |
2159782b | 166 | x = x->level[0].forward; |
e2641e09 | 167 | if (x && score == x->score && equalStringObjects(x->obj,obj)) { |
168 | zslDeleteNode(zsl, x, update); | |
169 | zslFreeNode(x); | |
170 | return 1; | |
171 | } else { | |
172 | return 0; /* not found */ | |
173 | } | |
174 | return 0; /* not found */ | |
175 | } | |
176 | ||
91504b6c PN |
177 | /* Struct to hold a inclusive/exclusive range spec. */ |
178 | typedef struct { | |
179 | double min, max; | |
180 | int minex, maxex; /* are min or max exclusive? */ | |
181 | } zrangespec; | |
182 | ||
45290ad9 | 183 | static int zslValueGteMin(double value, zrangespec *spec) { |
22b9bf15 PN |
184 | return spec->minex ? (value > spec->min) : (value >= spec->min); |
185 | } | |
186 | ||
45290ad9 | 187 | static int zslValueLteMax(double value, zrangespec *spec) { |
22b9bf15 PN |
188 | return spec->maxex ? (value < spec->max) : (value <= spec->max); |
189 | } | |
190 | ||
22b9bf15 PN |
191 | /* Returns if there is a part of the zset is in range. */ |
192 | int zslIsInRange(zskiplist *zsl, zrangespec *range) { | |
193 | zskiplistNode *x; | |
194 | ||
8e1b3277 PN |
195 | /* Test for ranges that will always be empty. */ |
196 | if (range->min > range->max || | |
197 | (range->min == range->max && (range->minex || range->maxex))) | |
198 | return 0; | |
22b9bf15 | 199 | x = zsl->tail; |
45290ad9 | 200 | if (x == NULL || !zslValueGteMin(x->score,range)) |
22b9bf15 PN |
201 | return 0; |
202 | x = zsl->header->level[0].forward; | |
45290ad9 | 203 | if (x == NULL || !zslValueLteMax(x->score,range)) |
22b9bf15 PN |
204 | return 0; |
205 | return 1; | |
206 | } | |
207 | ||
208 | /* Find the first node that is contained in the specified range. | |
209 | * Returns NULL when no element is contained in the range. */ | |
210 | zskiplistNode *zslFirstInRange(zskiplist *zsl, zrangespec range) { | |
211 | zskiplistNode *x; | |
212 | int i; | |
213 | ||
214 | /* If everything is out of range, return early. */ | |
215 | if (!zslIsInRange(zsl,&range)) return NULL; | |
216 | ||
217 | x = zsl->header; | |
218 | for (i = zsl->level-1; i >= 0; i--) { | |
219 | /* Go forward while *OUT* of range. */ | |
220 | while (x->level[i].forward && | |
45290ad9 | 221 | !zslValueGteMin(x->level[i].forward->score,&range)) |
22b9bf15 PN |
222 | x = x->level[i].forward; |
223 | } | |
224 | ||
e53ca04b | 225 | /* This is an inner range, so the next node cannot be NULL. */ |
22b9bf15 | 226 | x = x->level[0].forward; |
e53ca04b PN |
227 | redisAssert(x != NULL); |
228 | ||
229 | /* Check if score <= max. */ | |
230 | if (!zslValueLteMax(x->score,&range)) return NULL; | |
22b9bf15 PN |
231 | return x; |
232 | } | |
233 | ||
234 | /* Find the last node that is contained in the specified range. | |
235 | * Returns NULL when no element is contained in the range. */ | |
236 | zskiplistNode *zslLastInRange(zskiplist *zsl, zrangespec range) { | |
237 | zskiplistNode *x; | |
238 | int i; | |
239 | ||
240 | /* If everything is out of range, return early. */ | |
241 | if (!zslIsInRange(zsl,&range)) return NULL; | |
242 | ||
243 | x = zsl->header; | |
244 | for (i = zsl->level-1; i >= 0; i--) { | |
245 | /* Go forward while *IN* range. */ | |
246 | while (x->level[i].forward && | |
45290ad9 | 247 | zslValueLteMax(x->level[i].forward->score,&range)) |
22b9bf15 PN |
248 | x = x->level[i].forward; |
249 | } | |
250 | ||
e53ca04b PN |
251 | /* This is an inner range, so this node cannot be NULL. */ |
252 | redisAssert(x != NULL); | |
253 | ||
254 | /* Check if score >= min. */ | |
255 | if (!zslValueGteMin(x->score,&range)) return NULL; | |
22b9bf15 PN |
256 | return x; |
257 | } | |
258 | ||
e2641e09 | 259 | /* Delete all the elements with score between min and max from the skiplist. |
260 | * Min and mx are inclusive, so a score >= min || score <= max is deleted. | |
261 | * Note that this function takes the reference to the hash table view of the | |
262 | * sorted set, in order to remove the elements from the hash table too. */ | |
91504b6c | 263 | unsigned long zslDeleteRangeByScore(zskiplist *zsl, zrangespec range, dict *dict) { |
e2641e09 | 264 | zskiplistNode *update[ZSKIPLIST_MAXLEVEL], *x; |
265 | unsigned long removed = 0; | |
266 | int i; | |
267 | ||
268 | x = zsl->header; | |
269 | for (i = zsl->level-1; i >= 0; i--) { | |
91504b6c PN |
270 | while (x->level[i].forward && (range.minex ? |
271 | x->level[i].forward->score <= range.min : | |
272 | x->level[i].forward->score < range.min)) | |
273 | x = x->level[i].forward; | |
e2641e09 | 274 | update[i] = x; |
275 | } | |
91504b6c PN |
276 | |
277 | /* Current node is the last with score < or <= min. */ | |
2159782b | 278 | x = x->level[0].forward; |
91504b6c PN |
279 | |
280 | /* Delete nodes while in range. */ | |
281 | while (x && (range.maxex ? x->score < range.max : x->score <= range.max)) { | |
2159782b | 282 | zskiplistNode *next = x->level[0].forward; |
69ef89f2 | 283 | zslDeleteNode(zsl,x,update); |
e2641e09 | 284 | dictDelete(dict,x->obj); |
285 | zslFreeNode(x); | |
286 | removed++; | |
287 | x = next; | |
288 | } | |
91504b6c | 289 | return removed; |
e2641e09 | 290 | } |
291 | ||
292 | /* Delete all the elements with rank between start and end from the skiplist. | |
293 | * Start and end are inclusive. Note that start and end need to be 1-based */ | |
294 | unsigned long zslDeleteRangeByRank(zskiplist *zsl, unsigned int start, unsigned int end, dict *dict) { | |
295 | zskiplistNode *update[ZSKIPLIST_MAXLEVEL], *x; | |
296 | unsigned long traversed = 0, removed = 0; | |
297 | int i; | |
298 | ||
299 | x = zsl->header; | |
300 | for (i = zsl->level-1; i >= 0; i--) { | |
2159782b PN |
301 | while (x->level[i].forward && (traversed + x->level[i].span) < start) { |
302 | traversed += x->level[i].span; | |
303 | x = x->level[i].forward; | |
e2641e09 | 304 | } |
305 | update[i] = x; | |
306 | } | |
307 | ||
308 | traversed++; | |
2159782b | 309 | x = x->level[0].forward; |
e2641e09 | 310 | while (x && traversed <= end) { |
2159782b | 311 | zskiplistNode *next = x->level[0].forward; |
69ef89f2 | 312 | zslDeleteNode(zsl,x,update); |
e2641e09 | 313 | dictDelete(dict,x->obj); |
314 | zslFreeNode(x); | |
315 | removed++; | |
316 | traversed++; | |
317 | x = next; | |
318 | } | |
319 | return removed; | |
320 | } | |
321 | ||
e2641e09 | 322 | /* Find the rank for an element by both score and key. |
323 | * Returns 0 when the element cannot be found, rank otherwise. | |
324 | * Note that the rank is 1-based due to the span of zsl->header to the | |
325 | * first element. */ | |
a3004773 | 326 | unsigned long zslGetRank(zskiplist *zsl, double score, robj *o) { |
e2641e09 | 327 | zskiplistNode *x; |
328 | unsigned long rank = 0; | |
329 | int i; | |
330 | ||
331 | x = zsl->header; | |
332 | for (i = zsl->level-1; i >= 0; i--) { | |
2159782b PN |
333 | while (x->level[i].forward && |
334 | (x->level[i].forward->score < score || | |
335 | (x->level[i].forward->score == score && | |
336 | compareStringObjects(x->level[i].forward->obj,o) <= 0))) { | |
337 | rank += x->level[i].span; | |
338 | x = x->level[i].forward; | |
e2641e09 | 339 | } |
340 | ||
341 | /* x might be equal to zsl->header, so test if obj is non-NULL */ | |
342 | if (x->obj && equalStringObjects(x->obj,o)) { | |
343 | return rank; | |
344 | } | |
345 | } | |
346 | return 0; | |
347 | } | |
348 | ||
349 | /* Finds an element by its rank. The rank argument needs to be 1-based. */ | |
a3004773 | 350 | zskiplistNode* zslGetElementByRank(zskiplist *zsl, unsigned long rank) { |
e2641e09 | 351 | zskiplistNode *x; |
352 | unsigned long traversed = 0; | |
353 | int i; | |
354 | ||
355 | x = zsl->header; | |
356 | for (i = zsl->level-1; i >= 0; i--) { | |
2159782b | 357 | while (x->level[i].forward && (traversed + x->level[i].span) <= rank) |
e2641e09 | 358 | { |
2159782b PN |
359 | traversed += x->level[i].span; |
360 | x = x->level[i].forward; | |
e2641e09 | 361 | } |
362 | if (traversed == rank) { | |
363 | return x; | |
364 | } | |
365 | } | |
366 | return NULL; | |
367 | } | |
368 | ||
25bb8a44 | 369 | /* Populate the rangespec according to the objects min and max. */ |
7236fdb2 PN |
370 | static int zslParseRange(robj *min, robj *max, zrangespec *spec) { |
371 | char *eptr; | |
25bb8a44 PN |
372 | spec->minex = spec->maxex = 0; |
373 | ||
374 | /* Parse the min-max interval. If one of the values is prefixed | |
375 | * by the "(" character, it's considered "open". For instance | |
376 | * ZRANGEBYSCORE zset (1.5 (2.5 will match min < x < max | |
377 | * ZRANGEBYSCORE zset 1.5 2.5 will instead match min <= x <= max */ | |
378 | if (min->encoding == REDIS_ENCODING_INT) { | |
379 | spec->min = (long)min->ptr; | |
380 | } else { | |
381 | if (((char*)min->ptr)[0] == '(') { | |
7236fdb2 PN |
382 | spec->min = strtod((char*)min->ptr+1,&eptr); |
383 | if (eptr[0] != '\0' || isnan(spec->min)) return REDIS_ERR; | |
25bb8a44 PN |
384 | spec->minex = 1; |
385 | } else { | |
7236fdb2 PN |
386 | spec->min = strtod((char*)min->ptr,&eptr); |
387 | if (eptr[0] != '\0' || isnan(spec->min)) return REDIS_ERR; | |
25bb8a44 PN |
388 | } |
389 | } | |
390 | if (max->encoding == REDIS_ENCODING_INT) { | |
391 | spec->max = (long)max->ptr; | |
392 | } else { | |
393 | if (((char*)max->ptr)[0] == '(') { | |
7236fdb2 PN |
394 | spec->max = strtod((char*)max->ptr+1,&eptr); |
395 | if (eptr[0] != '\0' || isnan(spec->max)) return REDIS_ERR; | |
25bb8a44 PN |
396 | spec->maxex = 1; |
397 | } else { | |
7236fdb2 PN |
398 | spec->max = strtod((char*)max->ptr,&eptr); |
399 | if (eptr[0] != '\0' || isnan(spec->max)) return REDIS_ERR; | |
25bb8a44 PN |
400 | } |
401 | } | |
402 | ||
403 | return REDIS_OK; | |
404 | } | |
405 | ||
21c5b508 PN |
406 | /*----------------------------------------------------------------------------- |
407 | * Ziplist-backed sorted set API | |
408 | *----------------------------------------------------------------------------*/ | |
409 | ||
410 | double zzlGetScore(unsigned char *sptr) { | |
411 | unsigned char *vstr; | |
412 | unsigned int vlen; | |
413 | long long vlong; | |
414 | char buf[128]; | |
415 | double score; | |
416 | ||
417 | redisAssert(sptr != NULL); | |
418 | redisAssert(ziplistGet(sptr,&vstr,&vlen,&vlong)); | |
419 | ||
420 | if (vstr) { | |
421 | memcpy(buf,vstr,vlen); | |
422 | buf[vlen] = '\0'; | |
423 | score = strtod(buf,NULL); | |
424 | } else { | |
425 | score = vlong; | |
426 | } | |
427 | ||
428 | return score; | |
429 | } | |
430 | ||
431 | /* Compare element in sorted set with given element. */ | |
432 | int zzlCompareElements(unsigned char *eptr, unsigned char *cstr, unsigned int clen) { | |
433 | unsigned char *vstr; | |
434 | unsigned int vlen; | |
435 | long long vlong; | |
436 | unsigned char vbuf[32]; | |
437 | int minlen, cmp; | |
438 | ||
439 | redisAssert(ziplistGet(eptr,&vstr,&vlen,&vlong)); | |
440 | if (vstr == NULL) { | |
441 | /* Store string representation of long long in buf. */ | |
442 | vlen = ll2string((char*)vbuf,sizeof(vbuf),vlong); | |
443 | vstr = vbuf; | |
444 | } | |
445 | ||
446 | minlen = (vlen < clen) ? vlen : clen; | |
447 | cmp = memcmp(vstr,cstr,minlen); | |
448 | if (cmp == 0) return vlen-clen; | |
449 | return cmp; | |
450 | } | |
451 | ||
bbfe232f | 452 | unsigned int zzlLength(unsigned char *zl) { |
0b10e104 PN |
453 | return ziplistLen(zl)/2; |
454 | } | |
455 | ||
4c5f0966 PN |
456 | /* Move to next entry based on the values in eptr and sptr. Both are set to |
457 | * NULL when there is no next entry. */ | |
458 | void zzlNext(unsigned char *zl, unsigned char **eptr, unsigned char **sptr) { | |
459 | unsigned char *_eptr, *_sptr; | |
460 | redisAssert(*eptr != NULL && *sptr != NULL); | |
461 | ||
462 | _eptr = ziplistNext(zl,*sptr); | |
463 | if (_eptr != NULL) { | |
464 | _sptr = ziplistNext(zl,_eptr); | |
465 | redisAssert(_sptr != NULL); | |
466 | } else { | |
467 | /* No next entry. */ | |
468 | _sptr = NULL; | |
469 | } | |
470 | ||
471 | *eptr = _eptr; | |
472 | *sptr = _sptr; | |
473 | } | |
474 | ||
475 | /* Move to the previous entry based on the values in eptr and sptr. Both are | |
476 | * set to NULL when there is no next entry. */ | |
477 | void zzlPrev(unsigned char *zl, unsigned char **eptr, unsigned char **sptr) { | |
478 | unsigned char *_eptr, *_sptr; | |
479 | redisAssert(*eptr != NULL && *sptr != NULL); | |
480 | ||
481 | _sptr = ziplistPrev(zl,*eptr); | |
482 | if (_sptr != NULL) { | |
483 | _eptr = ziplistPrev(zl,_sptr); | |
484 | redisAssert(_eptr != NULL); | |
485 | } else { | |
486 | /* No previous entry. */ | |
487 | _eptr = NULL; | |
488 | } | |
489 | ||
490 | *eptr = _eptr; | |
491 | *sptr = _sptr; | |
492 | } | |
493 | ||
4a14dbba PN |
494 | /* Returns if there is a part of the zset is in range. Should only be used |
495 | * internally by zzlFirstInRange and zzlLastInRange. */ | |
496 | int zzlIsInRange(unsigned char *zl, zrangespec *range) { | |
497 | unsigned char *p; | |
498 | double score; | |
499 | ||
500 | /* Test for ranges that will always be empty. */ | |
501 | if (range->min > range->max || | |
502 | (range->min == range->max && (range->minex || range->maxex))) | |
503 | return 0; | |
504 | ||
505 | p = ziplistIndex(zl,-1); /* Last score. */ | |
506 | redisAssert(p != NULL); | |
507 | score = zzlGetScore(p); | |
508 | if (!zslValueGteMin(score,range)) | |
509 | return 0; | |
510 | ||
511 | p = ziplistIndex(zl,1); /* First score. */ | |
512 | redisAssert(p != NULL); | |
513 | score = zzlGetScore(p); | |
514 | if (!zslValueLteMax(score,range)) | |
515 | return 0; | |
516 | ||
517 | return 1; | |
518 | } | |
519 | ||
520 | /* Find pointer to the first element contained in the specified range. | |
521 | * Returns NULL when no element is contained in the range. */ | |
8588bfa3 | 522 | unsigned char *zzlFirstInRange(unsigned char *zl, zrangespec range) { |
4a14dbba PN |
523 | unsigned char *eptr = ziplistIndex(zl,0), *sptr; |
524 | double score; | |
525 | ||
526 | /* If everything is out of range, return early. */ | |
527 | if (!zzlIsInRange(zl,&range)) return NULL; | |
528 | ||
529 | while (eptr != NULL) { | |
530 | sptr = ziplistNext(zl,eptr); | |
531 | redisAssert(sptr != NULL); | |
532 | ||
533 | score = zzlGetScore(sptr); | |
e53ca04b PN |
534 | if (zslValueGteMin(score,&range)) { |
535 | /* Check if score <= max. */ | |
536 | if (zslValueLteMax(score,&range)) | |
537 | return eptr; | |
538 | return NULL; | |
539 | } | |
4a14dbba PN |
540 | |
541 | /* Move to next element. */ | |
542 | eptr = ziplistNext(zl,sptr); | |
543 | } | |
544 | ||
545 | return NULL; | |
546 | } | |
547 | ||
548 | /* Find pointer to the last element contained in the specified range. | |
549 | * Returns NULL when no element is contained in the range. */ | |
8588bfa3 | 550 | unsigned char *zzlLastInRange(unsigned char *zl, zrangespec range) { |
4a14dbba PN |
551 | unsigned char *eptr = ziplistIndex(zl,-2), *sptr; |
552 | double score; | |
553 | ||
554 | /* If everything is out of range, return early. */ | |
555 | if (!zzlIsInRange(zl,&range)) return NULL; | |
556 | ||
557 | while (eptr != NULL) { | |
558 | sptr = ziplistNext(zl,eptr); | |
559 | redisAssert(sptr != NULL); | |
560 | ||
561 | score = zzlGetScore(sptr); | |
e53ca04b PN |
562 | if (zslValueLteMax(score,&range)) { |
563 | /* Check if score >= min. */ | |
564 | if (zslValueGteMin(score,&range)) | |
565 | return eptr; | |
566 | return NULL; | |
567 | } | |
4a14dbba PN |
568 | |
569 | /* Move to previous element by moving to the score of previous element. | |
570 | * When this returns NULL, we know there also is no element. */ | |
571 | sptr = ziplistPrev(zl,eptr); | |
572 | if (sptr != NULL) | |
573 | redisAssert((eptr = ziplistPrev(zl,sptr)) != NULL); | |
574 | else | |
575 | eptr = NULL; | |
576 | } | |
577 | ||
578 | return NULL; | |
579 | } | |
580 | ||
8588bfa3 | 581 | unsigned char *zzlFind(unsigned char *zl, robj *ele, double *score) { |
21c5b508 PN |
582 | unsigned char *eptr = ziplistIndex(zl,0), *sptr; |
583 | ||
584 | ele = getDecodedObject(ele); | |
585 | while (eptr != NULL) { | |
586 | sptr = ziplistNext(zl,eptr); | |
587 | redisAssert(sptr != NULL); | |
588 | ||
589 | if (ziplistCompare(eptr,ele->ptr,sdslen(ele->ptr))) { | |
590 | /* Matching element, pull out score. */ | |
0b10e104 | 591 | if (score != NULL) *score = zzlGetScore(sptr); |
21c5b508 PN |
592 | decrRefCount(ele); |
593 | return eptr; | |
594 | } | |
595 | ||
596 | /* Move to next element. */ | |
597 | eptr = ziplistNext(zl,sptr); | |
598 | } | |
599 | ||
600 | decrRefCount(ele); | |
601 | return NULL; | |
602 | } | |
603 | ||
604 | /* Delete (element,score) pair from ziplist. Use local copy of eptr because we | |
605 | * don't want to modify the one given as argument. */ | |
8588bfa3 | 606 | unsigned char *zzlDelete(unsigned char *zl, unsigned char *eptr) { |
21c5b508 PN |
607 | unsigned char *p = eptr; |
608 | ||
609 | /* TODO: add function to ziplist API to delete N elements from offset. */ | |
610 | zl = ziplistDelete(zl,&p); | |
611 | zl = ziplistDelete(zl,&p); | |
8588bfa3 | 612 | return zl; |
21c5b508 PN |
613 | } |
614 | ||
8588bfa3 | 615 | unsigned char *zzlInsertAt(unsigned char *zl, unsigned char *eptr, robj *ele, double score) { |
21c5b508 PN |
616 | unsigned char *sptr; |
617 | char scorebuf[128]; | |
618 | int scorelen; | |
69298a05 | 619 | size_t offset; |
21c5b508 PN |
620 | |
621 | redisAssert(ele->encoding == REDIS_ENCODING_RAW); | |
622 | scorelen = d2string(scorebuf,sizeof(scorebuf),score); | |
623 | if (eptr == NULL) { | |
624 | zl = ziplistPush(zl,ele->ptr,sdslen(ele->ptr),ZIPLIST_TAIL); | |
625 | zl = ziplistPush(zl,(unsigned char*)scorebuf,scorelen,ZIPLIST_TAIL); | |
626 | } else { | |
627 | /* Keep offset relative to zl, as it might be re-allocated. */ | |
628 | offset = eptr-zl; | |
629 | zl = ziplistInsert(zl,eptr,ele->ptr,sdslen(ele->ptr)); | |
630 | eptr = zl+offset; | |
631 | ||
632 | /* Insert score after the element. */ | |
633 | redisAssert((sptr = ziplistNext(zl,eptr)) != NULL); | |
634 | zl = ziplistInsert(zl,sptr,(unsigned char*)scorebuf,scorelen); | |
635 | } | |
636 | ||
8588bfa3 | 637 | return zl; |
21c5b508 PN |
638 | } |
639 | ||
640 | /* Insert (element,score) pair in ziplist. This function assumes the element is | |
641 | * not yet present in the list. */ | |
8588bfa3 | 642 | unsigned char *zzlInsert(unsigned char *zl, robj *ele, double score) { |
21c5b508 PN |
643 | unsigned char *eptr = ziplistIndex(zl,0), *sptr; |
644 | double s; | |
21c5b508 PN |
645 | |
646 | ele = getDecodedObject(ele); | |
647 | while (eptr != NULL) { | |
648 | sptr = ziplistNext(zl,eptr); | |
649 | redisAssert(sptr != NULL); | |
650 | s = zzlGetScore(sptr); | |
651 | ||
652 | if (s > score) { | |
653 | /* First element with score larger than score for element to be | |
654 | * inserted. This means we should take its spot in the list to | |
655 | * maintain ordering. */ | |
8588bfa3 | 656 | zl = zzlInsertAt(zl,eptr,ele,score); |
21c5b508 | 657 | break; |
8218db3d PN |
658 | } else if (s == score) { |
659 | /* Ensure lexicographical ordering for elements. */ | |
d1c920c5 | 660 | if (zzlCompareElements(eptr,ele->ptr,sdslen(ele->ptr)) > 0) { |
8588bfa3 | 661 | zl = zzlInsertAt(zl,eptr,ele,score); |
8218db3d PN |
662 | break; |
663 | } | |
21c5b508 PN |
664 | } |
665 | ||
666 | /* Move to next element. */ | |
667 | eptr = ziplistNext(zl,sptr); | |
668 | } | |
669 | ||
670 | /* Push on tail of list when it was not yet inserted. */ | |
8218db3d | 671 | if (eptr == NULL) |
8588bfa3 | 672 | zl = zzlInsertAt(zl,NULL,ele,score); |
21c5b508 PN |
673 | |
674 | decrRefCount(ele); | |
8588bfa3 | 675 | return zl; |
21c5b508 | 676 | } |
25bb8a44 | 677 | |
8588bfa3 | 678 | unsigned char *zzlDeleteRangeByScore(unsigned char *zl, zrangespec range, unsigned long *deleted) { |
4a14dbba PN |
679 | unsigned char *eptr, *sptr; |
680 | double score; | |
8588bfa3 | 681 | unsigned long num = 0; |
4a14dbba | 682 | |
8588bfa3 | 683 | if (deleted != NULL) *deleted = 0; |
4a14dbba | 684 | |
8588bfa3 PN |
685 | eptr = zzlFirstInRange(zl,range); |
686 | if (eptr == NULL) return zl; | |
4a14dbba PN |
687 | |
688 | /* When the tail of the ziplist is deleted, eptr will point to the sentinel | |
689 | * byte and ziplistNext will return NULL. */ | |
690 | while ((sptr = ziplistNext(zl,eptr)) != NULL) { | |
691 | score = zzlGetScore(sptr); | |
692 | if (zslValueLteMax(score,&range)) { | |
693 | /* Delete both the element and the score. */ | |
694 | zl = ziplistDelete(zl,&eptr); | |
695 | zl = ziplistDelete(zl,&eptr); | |
8588bfa3 | 696 | num++; |
4a14dbba PN |
697 | } else { |
698 | /* No longer in range. */ | |
699 | break; | |
700 | } | |
701 | } | |
702 | ||
8588bfa3 PN |
703 | if (deleted != NULL) *deleted = num; |
704 | return zl; | |
4a14dbba PN |
705 | } |
706 | ||
63b7b7fb PN |
707 | /* Delete all the elements with rank between start and end from the skiplist. |
708 | * Start and end are inclusive. Note that start and end need to be 1-based */ | |
8588bfa3 | 709 | unsigned char *zzlDeleteRangeByRank(unsigned char *zl, unsigned int start, unsigned int end, unsigned long *deleted) { |
63b7b7fb | 710 | unsigned int num = (end-start)+1; |
8588bfa3 PN |
711 | if (deleted) *deleted = num; |
712 | zl = ziplistDeleteRange(zl,2*(start-1),2*num); | |
713 | return zl; | |
63b7b7fb PN |
714 | } |
715 | ||
5d1b4fb6 PN |
716 | /*----------------------------------------------------------------------------- |
717 | * Common sorted set API | |
718 | *----------------------------------------------------------------------------*/ | |
719 | ||
df26a0ae | 720 | unsigned int zsetLength(robj *zobj) { |
5d1b4fb6 PN |
721 | int length = -1; |
722 | if (zobj->encoding == REDIS_ENCODING_ZIPLIST) { | |
bbfe232f | 723 | length = zzlLength(zobj->ptr); |
100ed062 | 724 | } else if (zobj->encoding == REDIS_ENCODING_SKIPLIST) { |
5d1b4fb6 PN |
725 | length = ((zset*)zobj->ptr)->zsl->length; |
726 | } else { | |
727 | redisPanic("Unknown sorted set encoding"); | |
728 | } | |
729 | return length; | |
730 | } | |
731 | ||
df26a0ae | 732 | void zsetConvert(robj *zobj, int encoding) { |
a669d5e9 PN |
733 | zset *zs; |
734 | zskiplistNode *node, *next; | |
735 | robj *ele; | |
736 | double score; | |
737 | ||
738 | if (zobj->encoding == encoding) return; | |
739 | if (zobj->encoding == REDIS_ENCODING_ZIPLIST) { | |
740 | unsigned char *zl = zobj->ptr; | |
741 | unsigned char *eptr, *sptr; | |
742 | unsigned char *vstr; | |
743 | unsigned int vlen; | |
744 | long long vlong; | |
745 | ||
100ed062 | 746 | if (encoding != REDIS_ENCODING_SKIPLIST) |
a669d5e9 PN |
747 | redisPanic("Unknown target encoding"); |
748 | ||
749 | zs = zmalloc(sizeof(*zs)); | |
750 | zs->dict = dictCreate(&zsetDictType,NULL); | |
751 | zs->zsl = zslCreate(); | |
752 | ||
753 | eptr = ziplistIndex(zl,0); | |
754 | redisAssert(eptr != NULL); | |
755 | sptr = ziplistNext(zl,eptr); | |
756 | redisAssert(sptr != NULL); | |
757 | ||
758 | while (eptr != NULL) { | |
759 | score = zzlGetScore(sptr); | |
760 | redisAssert(ziplistGet(eptr,&vstr,&vlen,&vlong)); | |
761 | if (vstr == NULL) | |
762 | ele = createStringObjectFromLongLong(vlong); | |
763 | else | |
764 | ele = createStringObject((char*)vstr,vlen); | |
765 | ||
766 | /* Has incremented refcount since it was just created. */ | |
767 | node = zslInsert(zs->zsl,score,ele); | |
768 | redisAssert(dictAdd(zs->dict,ele,&node->score) == DICT_OK); | |
769 | incrRefCount(ele); /* Added to dictionary. */ | |
770 | zzlNext(zl,&eptr,&sptr); | |
771 | } | |
772 | ||
773 | zfree(zobj->ptr); | |
774 | zobj->ptr = zs; | |
100ed062 PN |
775 | zobj->encoding = REDIS_ENCODING_SKIPLIST; |
776 | } else if (zobj->encoding == REDIS_ENCODING_SKIPLIST) { | |
a669d5e9 PN |
777 | unsigned char *zl = ziplistNew(); |
778 | ||
779 | if (encoding != REDIS_ENCODING_ZIPLIST) | |
780 | redisPanic("Unknown target encoding"); | |
781 | ||
782 | /* Approach similar to zslFree(), since we want to free the skiplist at | |
783 | * the same time as creating the ziplist. */ | |
784 | zs = zobj->ptr; | |
785 | dictRelease(zs->dict); | |
786 | node = zs->zsl->header->level[0].forward; | |
787 | zfree(zs->zsl->header); | |
788 | zfree(zs->zsl); | |
789 | ||
a669d5e9 PN |
790 | while (node) { |
791 | ele = getDecodedObject(node->obj); | |
8588bfa3 | 792 | zl = zzlInsertAt(zl,NULL,ele,node->score); |
a669d5e9 PN |
793 | decrRefCount(ele); |
794 | ||
795 | next = node->level[0].forward; | |
796 | zslFreeNode(node); | |
797 | node = next; | |
798 | } | |
799 | ||
800 | zfree(zs); | |
8588bfa3 | 801 | zobj->ptr = zl; |
a669d5e9 PN |
802 | zobj->encoding = REDIS_ENCODING_ZIPLIST; |
803 | } else { | |
804 | redisPanic("Unknown sorted set encoding"); | |
805 | } | |
806 | } | |
807 | ||
e2641e09 | 808 | /*----------------------------------------------------------------------------- |
809 | * Sorted set commands | |
810 | *----------------------------------------------------------------------------*/ | |
811 | ||
69ef89f2 | 812 | /* This generic command implements both ZADD and ZINCRBY. */ |
3ca7532a | 813 | void zaddGenericCommand(redisClient *c, int incr) { |
21c5b508 | 814 | static char *nanerr = "resulting score is not a number (NaN)"; |
3ca7532a PN |
815 | robj *key = c->argv[1]; |
816 | robj *ele; | |
21c5b508 PN |
817 | robj *zobj; |
818 | robj *curobj; | |
3ca7532a PN |
819 | double score, curscore = 0.0; |
820 | ||
821 | if (getDoubleFromObjectOrReply(c,c->argv[2],&score,NULL) != REDIS_OK) | |
822 | return; | |
21c5b508 PN |
823 | |
824 | zobj = lookupKeyWrite(c->db,key); | |
825 | if (zobj == NULL) { | |
a669d5e9 PN |
826 | if (server.zset_max_ziplist_entries == 0 || |
827 | server.zset_max_ziplist_value < sdslen(c->argv[3]->ptr)) | |
828 | { | |
829 | zobj = createZsetObject(); | |
830 | } else { | |
831 | zobj = createZsetZiplistObject(); | |
832 | } | |
21c5b508 | 833 | dbAdd(c->db,key,zobj); |
e2641e09 | 834 | } else { |
21c5b508 | 835 | if (zobj->type != REDIS_ZSET) { |
e2641e09 | 836 | addReply(c,shared.wrongtypeerr); |
837 | return; | |
838 | } | |
839 | } | |
e2641e09 | 840 | |
21c5b508 PN |
841 | if (zobj->encoding == REDIS_ENCODING_ZIPLIST) { |
842 | unsigned char *eptr; | |
843 | ||
3ca7532a PN |
844 | /* Prefer non-encoded element when dealing with ziplists. */ |
845 | ele = c->argv[3]; | |
8588bfa3 | 846 | if ((eptr = zzlFind(zobj->ptr,ele,&curscore)) != NULL) { |
21c5b508 PN |
847 | if (incr) { |
848 | score += curscore; | |
849 | if (isnan(score)) { | |
850 | addReplyError(c,nanerr); | |
851 | /* Don't need to check if the sorted set is empty, because | |
852 | * we know it has at least one element. */ | |
853 | return; | |
854 | } | |
855 | } | |
856 | ||
857 | /* Remove and re-insert when score changed. */ | |
858 | if (score != curscore) { | |
8588bfa3 PN |
859 | zobj->ptr = zzlDelete(zobj->ptr,eptr); |
860 | zobj->ptr = zzlInsert(zobj->ptr,ele,score); | |
21c5b508 PN |
861 | |
862 | signalModifiedKey(c->db,key); | |
863 | server.dirty++; | |
864 | } | |
865 | ||
866 | if (incr) /* ZINCRBY */ | |
867 | addReplyDouble(c,score); | |
868 | else /* ZADD */ | |
869 | addReply(c,shared.czero); | |
870 | } else { | |
a669d5e9 PN |
871 | /* Optimize: check if the element is too large or the list becomes |
872 | * too long *before* executing zzlInsert. */ | |
8588bfa3 | 873 | zobj->ptr = zzlInsert(zobj->ptr,ele,score); |
bbfe232f | 874 | if (zzlLength(zobj->ptr) > server.zset_max_ziplist_entries) |
100ed062 | 875 | zsetConvert(zobj,REDIS_ENCODING_SKIPLIST); |
a669d5e9 | 876 | if (sdslen(ele->ptr) > server.zset_max_ziplist_value) |
100ed062 | 877 | zsetConvert(zobj,REDIS_ENCODING_SKIPLIST); |
69ef89f2 | 878 | |
21c5b508 PN |
879 | signalModifiedKey(c->db,key); |
880 | server.dirty++; | |
69ef89f2 | 881 | |
21c5b508 PN |
882 | if (incr) /* ZINCRBY */ |
883 | addReplyDouble(c,score); | |
884 | else /* ZADD */ | |
885 | addReply(c,shared.cone); | |
886 | } | |
100ed062 | 887 | } else if (zobj->encoding == REDIS_ENCODING_SKIPLIST) { |
21c5b508 PN |
888 | zset *zs = zobj->ptr; |
889 | zskiplistNode *znode; | |
e2641e09 | 890 | dictEntry *de; |
e2641e09 | 891 | |
3ca7532a | 892 | ele = c->argv[3] = tryObjectEncoding(c->argv[3]); |
e2641e09 | 893 | de = dictFind(zs->dict,ele); |
21c5b508 PN |
894 | if (de != NULL) { |
895 | curobj = dictGetEntryKey(de); | |
896 | curscore = *(double*)dictGetEntryVal(de); | |
897 | ||
898 | if (incr) { | |
899 | score += curscore; | |
900 | if (isnan(score)) { | |
901 | addReplyError(c,nanerr); | |
902 | /* Don't need to check if the sorted set is empty, because | |
903 | * we know it has at least one element. */ | |
904 | return; | |
905 | } | |
906 | } | |
907 | ||
908 | /* Remove and re-insert when score changed. We can safely delete | |
909 | * the key object from the skiplist, since the dictionary still has | |
910 | * a reference to it. */ | |
911 | if (score != curscore) { | |
912 | redisAssert(zslDelete(zs->zsl,curscore,curobj)); | |
913 | znode = zslInsert(zs->zsl,score,curobj); | |
914 | incrRefCount(curobj); /* Re-inserted in skiplist. */ | |
915 | dictGetEntryVal(de) = &znode->score; /* Update score ptr. */ | |
916 | ||
917 | signalModifiedKey(c->db,key); | |
918 | server.dirty++; | |
919 | } | |
920 | ||
921 | if (incr) /* ZINCRBY */ | |
922 | addReplyDouble(c,score); | |
923 | else /* ZADD */ | |
924 | addReply(c,shared.czero); | |
925 | } else { | |
926 | znode = zslInsert(zs->zsl,score,ele); | |
927 | incrRefCount(ele); /* Inserted in skiplist. */ | |
928 | redisAssert(dictAdd(zs->dict,ele,&znode->score) == DICT_OK); | |
929 | incrRefCount(ele); /* Added to dictionary. */ | |
930 | ||
931 | signalModifiedKey(c->db,key); | |
e2641e09 | 932 | server.dirty++; |
21c5b508 PN |
933 | |
934 | if (incr) /* ZINCRBY */ | |
935 | addReplyDouble(c,score); | |
936 | else /* ZADD */ | |
937 | addReply(c,shared.cone); | |
e2641e09 | 938 | } |
21c5b508 PN |
939 | } else { |
940 | redisPanic("Unknown sorted set encoding"); | |
e2641e09 | 941 | } |
942 | } | |
943 | ||
944 | void zaddCommand(redisClient *c) { | |
3ca7532a | 945 | zaddGenericCommand(c,0); |
e2641e09 | 946 | } |
947 | ||
948 | void zincrbyCommand(redisClient *c) { | |
3ca7532a | 949 | zaddGenericCommand(c,1); |
e2641e09 | 950 | } |
951 | ||
952 | void zremCommand(redisClient *c) { | |
0b10e104 PN |
953 | robj *key = c->argv[1]; |
954 | robj *ele = c->argv[2]; | |
955 | robj *zobj; | |
956 | ||
957 | if ((zobj = lookupKeyWriteOrReply(c,key,shared.czero)) == NULL || | |
958 | checkType(c,zobj,REDIS_ZSET)) return; | |
959 | ||
960 | if (zobj->encoding == REDIS_ENCODING_ZIPLIST) { | |
961 | unsigned char *eptr; | |
962 | ||
8588bfa3 PN |
963 | if ((eptr = zzlFind(zobj->ptr,ele,NULL)) != NULL) { |
964 | zobj->ptr = zzlDelete(zobj->ptr,eptr); | |
bbfe232f | 965 | if (zzlLength(zobj->ptr) == 0) dbDelete(c->db,key); |
0b10e104 PN |
966 | } else { |
967 | addReply(c,shared.czero); | |
968 | return; | |
969 | } | |
100ed062 | 970 | } else if (zobj->encoding == REDIS_ENCODING_SKIPLIST) { |
0b10e104 PN |
971 | zset *zs = zobj->ptr; |
972 | dictEntry *de; | |
973 | double score; | |
974 | ||
975 | de = dictFind(zs->dict,ele); | |
976 | if (de != NULL) { | |
977 | /* Delete from the skiplist */ | |
978 | score = *(double*)dictGetEntryVal(de); | |
979 | redisAssert(zslDelete(zs->zsl,score,ele)); | |
980 | ||
981 | /* Delete from the hash table */ | |
982 | dictDelete(zs->dict,ele); | |
983 | if (htNeedsResize(zs->dict)) dictResize(zs->dict); | |
984 | if (dictSize(zs->dict) == 0) dbDelete(c->db,key); | |
985 | } else { | |
986 | addReply(c,shared.czero); | |
987 | return; | |
988 | } | |
989 | } else { | |
990 | redisPanic("Unknown sorted set encoding"); | |
e2641e09 | 991 | } |
e2641e09 | 992 | |
0b10e104 | 993 | signalModifiedKey(c->db,key); |
e2641e09 | 994 | server.dirty++; |
995 | addReply(c,shared.cone); | |
996 | } | |
997 | ||
998 | void zremrangebyscoreCommand(redisClient *c) { | |
4a14dbba PN |
999 | robj *key = c->argv[1]; |
1000 | robj *zobj; | |
91504b6c | 1001 | zrangespec range; |
4a14dbba | 1002 | unsigned long deleted; |
e2641e09 | 1003 | |
91504b6c | 1004 | /* Parse the range arguments. */ |
7236fdb2 PN |
1005 | if (zslParseRange(c->argv[2],c->argv[3],&range) != REDIS_OK) { |
1006 | addReplyError(c,"min or max is not a double"); | |
1007 | return; | |
1008 | } | |
e2641e09 | 1009 | |
4a14dbba PN |
1010 | if ((zobj = lookupKeyWriteOrReply(c,key,shared.czero)) == NULL || |
1011 | checkType(c,zobj,REDIS_ZSET)) return; | |
1012 | ||
1013 | if (zobj->encoding == REDIS_ENCODING_ZIPLIST) { | |
8588bfa3 | 1014 | zobj->ptr = zzlDeleteRangeByScore(zobj->ptr,range,&deleted); |
48991620 | 1015 | if (zzlLength(zobj->ptr) == 0) dbDelete(c->db,key); |
100ed062 | 1016 | } else if (zobj->encoding == REDIS_ENCODING_SKIPLIST) { |
4a14dbba PN |
1017 | zset *zs = zobj->ptr; |
1018 | deleted = zslDeleteRangeByScore(zs->zsl,range,zs->dict); | |
1019 | if (htNeedsResize(zs->dict)) dictResize(zs->dict); | |
1020 | if (dictSize(zs->dict) == 0) dbDelete(c->db,key); | |
1021 | } else { | |
1022 | redisPanic("Unknown sorted set encoding"); | |
1023 | } | |
e2641e09 | 1024 | |
4a14dbba | 1025 | if (deleted) signalModifiedKey(c->db,key); |
e2641e09 | 1026 | server.dirty += deleted; |
1027 | addReplyLongLong(c,deleted); | |
1028 | } | |
1029 | ||
1030 | void zremrangebyrankCommand(redisClient *c) { | |
63b7b7fb PN |
1031 | robj *key = c->argv[1]; |
1032 | robj *zobj; | |
e2641e09 | 1033 | long start; |
1034 | long end; | |
1035 | int llen; | |
63b7b7fb | 1036 | unsigned long deleted; |
e2641e09 | 1037 | |
1038 | if ((getLongFromObjectOrReply(c, c->argv[2], &start, NULL) != REDIS_OK) || | |
1039 | (getLongFromObjectOrReply(c, c->argv[3], &end, NULL) != REDIS_OK)) return; | |
1040 | ||
63b7b7fb PN |
1041 | if ((zobj = lookupKeyWriteOrReply(c,key,shared.czero)) == NULL || |
1042 | checkType(c,zobj,REDIS_ZSET)) return; | |
e2641e09 | 1043 | |
63b7b7fb | 1044 | /* Sanitize indexes. */ |
df26a0ae | 1045 | llen = zsetLength(zobj); |
e2641e09 | 1046 | if (start < 0) start = llen+start; |
1047 | if (end < 0) end = llen+end; | |
1048 | if (start < 0) start = 0; | |
e2641e09 | 1049 | |
d0a4e24e PN |
1050 | /* Invariant: start >= 0, so this test will be true when end < 0. |
1051 | * The range is empty when start > end or start >= length. */ | |
e2641e09 | 1052 | if (start > end || start >= llen) { |
1053 | addReply(c,shared.czero); | |
1054 | return; | |
1055 | } | |
1056 | if (end >= llen) end = llen-1; | |
1057 | ||
63b7b7fb PN |
1058 | if (zobj->encoding == REDIS_ENCODING_ZIPLIST) { |
1059 | /* Correct for 1-based rank. */ | |
8588bfa3 | 1060 | zobj->ptr = zzlDeleteRangeByRank(zobj->ptr,start+1,end+1,&deleted); |
48991620 | 1061 | if (zzlLength(zobj->ptr) == 0) dbDelete(c->db,key); |
100ed062 | 1062 | } else if (zobj->encoding == REDIS_ENCODING_SKIPLIST) { |
63b7b7fb PN |
1063 | zset *zs = zobj->ptr; |
1064 | ||
1065 | /* Correct for 1-based rank. */ | |
1066 | deleted = zslDeleteRangeByRank(zs->zsl,start+1,end+1,zs->dict); | |
1067 | if (htNeedsResize(zs->dict)) dictResize(zs->dict); | |
1068 | if (dictSize(zs->dict) == 0) dbDelete(c->db,key); | |
1069 | } else { | |
1070 | redisPanic("Unknown sorted set encoding"); | |
1071 | } | |
1072 | ||
1073 | if (deleted) signalModifiedKey(c->db,key); | |
e2641e09 | 1074 | server.dirty += deleted; |
63b7b7fb | 1075 | addReplyLongLong(c,deleted); |
e2641e09 | 1076 | } |
1077 | ||
1078 | typedef struct { | |
56ce42fa PN |
1079 | robj *subject; |
1080 | int type; /* Set, sorted set */ | |
1081 | int encoding; | |
e2641e09 | 1082 | double weight; |
56ce42fa PN |
1083 | |
1084 | union { | |
1085 | /* Set iterators. */ | |
1086 | union _iterset { | |
1087 | struct { | |
1088 | intset *is; | |
1089 | int ii; | |
1090 | } is; | |
1091 | struct { | |
1092 | dict *dict; | |
1093 | dictIterator *di; | |
1094 | dictEntry *de; | |
1095 | } ht; | |
1096 | } set; | |
1097 | ||
1098 | /* Sorted set iterators. */ | |
1099 | union _iterzset { | |
1100 | struct { | |
1101 | unsigned char *zl; | |
1102 | unsigned char *eptr, *sptr; | |
1103 | } zl; | |
1104 | struct { | |
1105 | zset *zs; | |
1106 | zskiplistNode *node; | |
1107 | } sl; | |
1108 | } zset; | |
1109 | } iter; | |
e2641e09 | 1110 | } zsetopsrc; |
1111 | ||
56ce42fa PN |
1112 | |
1113 | /* Use dirty flags for pointers that need to be cleaned up in the next | |
1114 | * iteration over the zsetopval. The dirty flag for the long long value is | |
1115 | * special, since long long values don't need cleanup. Instead, it means that | |
1116 | * we already checked that "ell" holds a long long, or tried to convert another | |
1117 | * representation into a long long value. When this was successful, | |
1118 | * OPVAL_VALID_LL is set as well. */ | |
1119 | #define OPVAL_DIRTY_ROBJ 1 | |
1120 | #define OPVAL_DIRTY_LL 2 | |
1121 | #define OPVAL_VALID_LL 4 | |
1122 | ||
1123 | /* Store value retrieved from the iterator. */ | |
1124 | typedef struct { | |
1125 | int flags; | |
1126 | unsigned char _buf[32]; /* Private buffer. */ | |
1127 | robj *ele; | |
1128 | unsigned char *estr; | |
1129 | unsigned int elen; | |
1130 | long long ell; | |
1131 | double score; | |
1132 | } zsetopval; | |
1133 | ||
1134 | typedef union _iterset iterset; | |
1135 | typedef union _iterzset iterzset; | |
1136 | ||
1137 | void zuiInitIterator(zsetopsrc *op) { | |
1138 | if (op->subject == NULL) | |
1139 | return; | |
1140 | ||
1141 | if (op->type == REDIS_SET) { | |
1142 | iterset *it = &op->iter.set; | |
1143 | if (op->encoding == REDIS_ENCODING_INTSET) { | |
1144 | it->is.is = op->subject->ptr; | |
1145 | it->is.ii = 0; | |
1146 | } else if (op->encoding == REDIS_ENCODING_HT) { | |
1147 | it->ht.dict = op->subject->ptr; | |
1148 | it->ht.di = dictGetIterator(op->subject->ptr); | |
1149 | it->ht.de = dictNext(it->ht.di); | |
1150 | } else { | |
1151 | redisPanic("Unknown set encoding"); | |
1152 | } | |
1153 | } else if (op->type == REDIS_ZSET) { | |
1154 | iterzset *it = &op->iter.zset; | |
1155 | if (op->encoding == REDIS_ENCODING_ZIPLIST) { | |
1156 | it->zl.zl = op->subject->ptr; | |
1157 | it->zl.eptr = ziplistIndex(it->zl.zl,0); | |
1158 | if (it->zl.eptr != NULL) { | |
1159 | it->zl.sptr = ziplistNext(it->zl.zl,it->zl.eptr); | |
1160 | redisAssert(it->zl.sptr != NULL); | |
1161 | } | |
100ed062 | 1162 | } else if (op->encoding == REDIS_ENCODING_SKIPLIST) { |
56ce42fa PN |
1163 | it->sl.zs = op->subject->ptr; |
1164 | it->sl.node = it->sl.zs->zsl->header->level[0].forward; | |
1165 | } else { | |
1166 | redisPanic("Unknown sorted set encoding"); | |
1167 | } | |
1168 | } else { | |
1169 | redisPanic("Unsupported type"); | |
1170 | } | |
1171 | } | |
1172 | ||
1173 | void zuiClearIterator(zsetopsrc *op) { | |
1174 | if (op->subject == NULL) | |
1175 | return; | |
1176 | ||
1177 | if (op->type == REDIS_SET) { | |
1178 | iterset *it = &op->iter.set; | |
1179 | if (op->encoding == REDIS_ENCODING_INTSET) { | |
1180 | REDIS_NOTUSED(it); /* skip */ | |
1181 | } else if (op->encoding == REDIS_ENCODING_HT) { | |
1182 | dictReleaseIterator(it->ht.di); | |
1183 | } else { | |
1184 | redisPanic("Unknown set encoding"); | |
1185 | } | |
1186 | } else if (op->type == REDIS_ZSET) { | |
1187 | iterzset *it = &op->iter.zset; | |
1188 | if (op->encoding == REDIS_ENCODING_ZIPLIST) { | |
1189 | REDIS_NOTUSED(it); /* skip */ | |
100ed062 | 1190 | } else if (op->encoding == REDIS_ENCODING_SKIPLIST) { |
56ce42fa PN |
1191 | REDIS_NOTUSED(it); /* skip */ |
1192 | } else { | |
1193 | redisPanic("Unknown sorted set encoding"); | |
1194 | } | |
1195 | } else { | |
1196 | redisPanic("Unsupported type"); | |
1197 | } | |
1198 | } | |
1199 | ||
1200 | int zuiLength(zsetopsrc *op) { | |
1201 | if (op->subject == NULL) | |
1202 | return 0; | |
1203 | ||
1204 | if (op->type == REDIS_SET) { | |
1205 | iterset *it = &op->iter.set; | |
1206 | if (op->encoding == REDIS_ENCODING_INTSET) { | |
1207 | return intsetLen(it->is.is); | |
1208 | } else if (op->encoding == REDIS_ENCODING_HT) { | |
1209 | return dictSize(it->ht.dict); | |
1210 | } else { | |
1211 | redisPanic("Unknown set encoding"); | |
1212 | } | |
1213 | } else if (op->type == REDIS_ZSET) { | |
1214 | iterzset *it = &op->iter.zset; | |
1215 | if (op->encoding == REDIS_ENCODING_ZIPLIST) { | |
1216 | return zzlLength(it->zl.zl); | |
100ed062 | 1217 | } else if (op->encoding == REDIS_ENCODING_SKIPLIST) { |
56ce42fa PN |
1218 | return it->sl.zs->zsl->length; |
1219 | } else { | |
1220 | redisPanic("Unknown sorted set encoding"); | |
1221 | } | |
1222 | } else { | |
1223 | redisPanic("Unsupported type"); | |
1224 | } | |
1225 | } | |
1226 | ||
1227 | /* Check if the current value is valid. If so, store it in the passed structure | |
1228 | * and move to the next element. If not valid, this means we have reached the | |
1229 | * end of the structure and can abort. */ | |
1230 | int zuiNext(zsetopsrc *op, zsetopval *val) { | |
1231 | if (op->subject == NULL) | |
1232 | return 0; | |
1233 | ||
1234 | if (val->flags & OPVAL_DIRTY_ROBJ) | |
1235 | decrRefCount(val->ele); | |
1236 | ||
1237 | bzero(val,sizeof(zsetopval)); | |
1238 | ||
1239 | if (op->type == REDIS_SET) { | |
1240 | iterset *it = &op->iter.set; | |
1241 | if (op->encoding == REDIS_ENCODING_INTSET) { | |
1242 | if (!intsetGet(it->is.is,it->is.ii,&val->ell)) | |
1243 | return 0; | |
1244 | val->score = 1.0; | |
1245 | ||
1246 | /* Move to next element. */ | |
1247 | it->is.ii++; | |
1248 | } else if (op->encoding == REDIS_ENCODING_HT) { | |
1249 | if (it->ht.de == NULL) | |
1250 | return 0; | |
1251 | val->ele = dictGetEntryKey(it->ht.de); | |
1252 | val->score = 1.0; | |
1253 | ||
1254 | /* Move to next element. */ | |
1255 | it->ht.de = dictNext(it->ht.di); | |
1256 | } else { | |
1257 | redisPanic("Unknown set encoding"); | |
1258 | } | |
1259 | } else if (op->type == REDIS_ZSET) { | |
1260 | iterzset *it = &op->iter.zset; | |
1261 | if (op->encoding == REDIS_ENCODING_ZIPLIST) { | |
1262 | /* No need to check both, but better be explicit. */ | |
1263 | if (it->zl.eptr == NULL || it->zl.sptr == NULL) | |
1264 | return 0; | |
1265 | redisAssert(ziplistGet(it->zl.eptr,&val->estr,&val->elen,&val->ell)); | |
1266 | val->score = zzlGetScore(it->zl.sptr); | |
1267 | ||
1268 | /* Move to next element. */ | |
1269 | zzlNext(it->zl.zl,&it->zl.eptr,&it->zl.sptr); | |
100ed062 | 1270 | } else if (op->encoding == REDIS_ENCODING_SKIPLIST) { |
56ce42fa PN |
1271 | if (it->sl.node == NULL) |
1272 | return 0; | |
1273 | val->ele = it->sl.node->obj; | |
1274 | val->score = it->sl.node->score; | |
1275 | ||
1276 | /* Move to next element. */ | |
1277 | it->sl.node = it->sl.node->level[0].forward; | |
1278 | } else { | |
1279 | redisPanic("Unknown sorted set encoding"); | |
1280 | } | |
1281 | } else { | |
1282 | redisPanic("Unsupported type"); | |
1283 | } | |
1284 | return 1; | |
1285 | } | |
1286 | ||
1287 | int zuiLongLongFromValue(zsetopval *val) { | |
1288 | if (!(val->flags & OPVAL_DIRTY_LL)) { | |
1289 | val->flags |= OPVAL_DIRTY_LL; | |
1290 | ||
1291 | if (val->ele != NULL) { | |
1292 | if (val->ele->encoding == REDIS_ENCODING_INT) { | |
1293 | val->ell = (long)val->ele->ptr; | |
1294 | val->flags |= OPVAL_VALID_LL; | |
1295 | } else if (val->ele->encoding == REDIS_ENCODING_RAW) { | |
1296 | if (string2ll(val->ele->ptr,sdslen(val->ele->ptr),&val->ell)) | |
1297 | val->flags |= OPVAL_VALID_LL; | |
1298 | } else { | |
1299 | redisPanic("Unsupported element encoding"); | |
1300 | } | |
1301 | } else if (val->estr != NULL) { | |
1302 | if (string2ll((char*)val->estr,val->elen,&val->ell)) | |
1303 | val->flags |= OPVAL_VALID_LL; | |
1304 | } else { | |
1305 | /* The long long was already set, flag as valid. */ | |
1306 | val->flags |= OPVAL_VALID_LL; | |
1307 | } | |
1308 | } | |
1309 | return val->flags & OPVAL_VALID_LL; | |
1310 | } | |
1311 | ||
1312 | robj *zuiObjectFromValue(zsetopval *val) { | |
1313 | if (val->ele == NULL) { | |
1314 | if (val->estr != NULL) { | |
1315 | val->ele = createStringObject((char*)val->estr,val->elen); | |
1316 | } else { | |
1317 | val->ele = createStringObjectFromLongLong(val->ell); | |
1318 | } | |
1319 | val->flags |= OPVAL_DIRTY_ROBJ; | |
1320 | } | |
1321 | return val->ele; | |
1322 | } | |
1323 | ||
1324 | int zuiBufferFromValue(zsetopval *val) { | |
1325 | if (val->estr == NULL) { | |
1326 | if (val->ele != NULL) { | |
1327 | if (val->ele->encoding == REDIS_ENCODING_INT) { | |
1328 | val->elen = ll2string((char*)val->_buf,sizeof(val->_buf),(long)val->ele->ptr); | |
1329 | val->estr = val->_buf; | |
1330 | } else if (val->ele->encoding == REDIS_ENCODING_RAW) { | |
1331 | val->elen = sdslen(val->ele->ptr); | |
1332 | val->estr = val->ele->ptr; | |
1333 | } else { | |
1334 | redisPanic("Unsupported element encoding"); | |
1335 | } | |
1336 | } else { | |
1337 | val->elen = ll2string((char*)val->_buf,sizeof(val->_buf),val->ell); | |
1338 | val->estr = val->_buf; | |
1339 | } | |
1340 | } | |
1341 | return 1; | |
1342 | } | |
1343 | ||
1344 | /* Find value pointed to by val in the source pointer to by op. When found, | |
1345 | * return 1 and store its score in target. Return 0 otherwise. */ | |
1346 | int zuiFind(zsetopsrc *op, zsetopval *val, double *score) { | |
1347 | if (op->subject == NULL) | |
1348 | return 0; | |
1349 | ||
1350 | if (op->type == REDIS_SET) { | |
1351 | iterset *it = &op->iter.set; | |
1352 | ||
1353 | if (op->encoding == REDIS_ENCODING_INTSET) { | |
1354 | if (zuiLongLongFromValue(val) && intsetFind(it->is.is,val->ell)) { | |
1355 | *score = 1.0; | |
1356 | return 1; | |
1357 | } else { | |
1358 | return 0; | |
1359 | } | |
1360 | } else if (op->encoding == REDIS_ENCODING_HT) { | |
1361 | zuiObjectFromValue(val); | |
1362 | if (dictFind(it->ht.dict,val->ele) != NULL) { | |
1363 | *score = 1.0; | |
1364 | return 1; | |
1365 | } else { | |
1366 | return 0; | |
1367 | } | |
1368 | } else { | |
1369 | redisPanic("Unknown set encoding"); | |
1370 | } | |
1371 | } else if (op->type == REDIS_ZSET) { | |
1372 | iterzset *it = &op->iter.zset; | |
1373 | zuiObjectFromValue(val); | |
1374 | ||
1375 | if (op->encoding == REDIS_ENCODING_ZIPLIST) { | |
8588bfa3 | 1376 | if (zzlFind(it->zl.zl,val->ele,score) != NULL) { |
56ce42fa PN |
1377 | /* Score is already set by zzlFind. */ |
1378 | return 1; | |
1379 | } else { | |
1380 | return 0; | |
1381 | } | |
100ed062 | 1382 | } else if (op->encoding == REDIS_ENCODING_SKIPLIST) { |
56ce42fa PN |
1383 | dictEntry *de; |
1384 | if ((de = dictFind(it->sl.zs->dict,val->ele)) != NULL) { | |
1385 | *score = *(double*)dictGetEntryVal(de); | |
1386 | return 1; | |
1387 | } else { | |
1388 | return 0; | |
1389 | } | |
1390 | } else { | |
1391 | redisPanic("Unknown sorted set encoding"); | |
1392 | } | |
1393 | } else { | |
1394 | redisPanic("Unsupported type"); | |
1395 | } | |
1396 | } | |
1397 | ||
1398 | int zuiCompareByCardinality(const void *s1, const void *s2) { | |
1399 | return zuiLength((zsetopsrc*)s1) - zuiLength((zsetopsrc*)s2); | |
e2641e09 | 1400 | } |
1401 | ||
1402 | #define REDIS_AGGR_SUM 1 | |
1403 | #define REDIS_AGGR_MIN 2 | |
1404 | #define REDIS_AGGR_MAX 3 | |
1405 | #define zunionInterDictValue(_e) (dictGetEntryVal(_e) == NULL ? 1.0 : *(double*)dictGetEntryVal(_e)) | |
1406 | ||
1407 | inline static void zunionInterAggregate(double *target, double val, int aggregate) { | |
1408 | if (aggregate == REDIS_AGGR_SUM) { | |
1409 | *target = *target + val; | |
d9e28bcf PN |
1410 | /* The result of adding two doubles is NaN when one variable |
1411 | * is +inf and the other is -inf. When these numbers are added, | |
1412 | * we maintain the convention of the result being 0.0. */ | |
1413 | if (isnan(*target)) *target = 0.0; | |
e2641e09 | 1414 | } else if (aggregate == REDIS_AGGR_MIN) { |
1415 | *target = val < *target ? val : *target; | |
1416 | } else if (aggregate == REDIS_AGGR_MAX) { | |
1417 | *target = val > *target ? val : *target; | |
1418 | } else { | |
1419 | /* safety net */ | |
1420 | redisPanic("Unknown ZUNION/INTER aggregate type"); | |
1421 | } | |
1422 | } | |
1423 | ||
1424 | void zunionInterGenericCommand(redisClient *c, robj *dstkey, int op) { | |
1425 | int i, j, setnum; | |
1426 | int aggregate = REDIS_AGGR_SUM; | |
1427 | zsetopsrc *src; | |
56ce42fa PN |
1428 | zsetopval zval; |
1429 | robj *tmp; | |
255eebe2 | 1430 | unsigned int maxelelen = 0; |
e2641e09 | 1431 | robj *dstobj; |
1432 | zset *dstzset; | |
69ef89f2 | 1433 | zskiplistNode *znode; |
8c1420ff | 1434 | int touched = 0; |
e2641e09 | 1435 | |
1436 | /* expect setnum input keys to be given */ | |
1437 | setnum = atoi(c->argv[2]->ptr); | |
1438 | if (setnum < 1) { | |
3ab20376 PN |
1439 | addReplyError(c, |
1440 | "at least 1 input key is needed for ZUNIONSTORE/ZINTERSTORE"); | |
e2641e09 | 1441 | return; |
1442 | } | |
1443 | ||
1444 | /* test if the expected number of keys would overflow */ | |
1445 | if (3+setnum > c->argc) { | |
1446 | addReply(c,shared.syntaxerr); | |
1447 | return; | |
1448 | } | |
1449 | ||
1450 | /* read keys to be used for input */ | |
56ce42fa | 1451 | src = zcalloc(sizeof(zsetopsrc) * setnum); |
e2641e09 | 1452 | for (i = 0, j = 3; i < setnum; i++, j++) { |
1453 | robj *obj = lookupKeyWrite(c->db,c->argv[j]); | |
56ce42fa PN |
1454 | if (obj != NULL) { |
1455 | if (obj->type != REDIS_ZSET && obj->type != REDIS_SET) { | |
e2641e09 | 1456 | zfree(src); |
1457 | addReply(c,shared.wrongtypeerr); | |
1458 | return; | |
1459 | } | |
56ce42fa PN |
1460 | |
1461 | src[i].subject = obj; | |
1462 | src[i].type = obj->type; | |
1463 | src[i].encoding = obj->encoding; | |
1464 | } else { | |
1465 | src[i].subject = NULL; | |
e2641e09 | 1466 | } |
1467 | ||
56ce42fa | 1468 | /* Default all weights to 1. */ |
e2641e09 | 1469 | src[i].weight = 1.0; |
1470 | } | |
1471 | ||
1472 | /* parse optional extra arguments */ | |
1473 | if (j < c->argc) { | |
1474 | int remaining = c->argc - j; | |
1475 | ||
1476 | while (remaining) { | |
1477 | if (remaining >= (setnum + 1) && !strcasecmp(c->argv[j]->ptr,"weights")) { | |
1478 | j++; remaining--; | |
1479 | for (i = 0; i < setnum; i++, j++, remaining--) { | |
673e1fb7 PN |
1480 | if (getDoubleFromObjectOrReply(c,c->argv[j],&src[i].weight, |
1481 | "weight value is not a double") != REDIS_OK) | |
1482 | { | |
1483 | zfree(src); | |
e2641e09 | 1484 | return; |
673e1fb7 | 1485 | } |
e2641e09 | 1486 | } |
1487 | } else if (remaining >= 2 && !strcasecmp(c->argv[j]->ptr,"aggregate")) { | |
1488 | j++; remaining--; | |
1489 | if (!strcasecmp(c->argv[j]->ptr,"sum")) { | |
1490 | aggregate = REDIS_AGGR_SUM; | |
1491 | } else if (!strcasecmp(c->argv[j]->ptr,"min")) { | |
1492 | aggregate = REDIS_AGGR_MIN; | |
1493 | } else if (!strcasecmp(c->argv[j]->ptr,"max")) { | |
1494 | aggregate = REDIS_AGGR_MAX; | |
1495 | } else { | |
1496 | zfree(src); | |
1497 | addReply(c,shared.syntaxerr); | |
1498 | return; | |
1499 | } | |
1500 | j++; remaining--; | |
1501 | } else { | |
1502 | zfree(src); | |
1503 | addReply(c,shared.syntaxerr); | |
1504 | return; | |
1505 | } | |
1506 | } | |
1507 | } | |
1508 | ||
56ce42fa PN |
1509 | for (i = 0; i < setnum; i++) |
1510 | zuiInitIterator(&src[i]); | |
1511 | ||
e2641e09 | 1512 | /* sort sets from the smallest to largest, this will improve our |
1513 | * algorithm's performance */ | |
56ce42fa | 1514 | qsort(src,setnum,sizeof(zsetopsrc),zuiCompareByCardinality); |
e2641e09 | 1515 | |
1516 | dstobj = createZsetObject(); | |
1517 | dstzset = dstobj->ptr; | |
1518 | ||
1519 | if (op == REDIS_OP_INTER) { | |
56ce42fa PN |
1520 | /* Skip everything if the smallest input is empty. */ |
1521 | if (zuiLength(&src[0]) > 0) { | |
1522 | /* Precondition: as src[0] is non-empty and the inputs are ordered | |
1523 | * by size, all src[i > 0] are non-empty too. */ | |
1524 | while (zuiNext(&src[0],&zval)) { | |
d433ebc6 | 1525 | double score, value; |
e2641e09 | 1526 | |
56ce42fa | 1527 | score = src[0].weight * zval.score; |
e2641e09 | 1528 | for (j = 1; j < setnum; j++) { |
56ce42fa PN |
1529 | if (zuiFind(&src[j],&zval,&value)) { |
1530 | value *= src[j].weight; | |
d433ebc6 | 1531 | zunionInterAggregate(&score,value,aggregate); |
e2641e09 | 1532 | } else { |
1533 | break; | |
1534 | } | |
1535 | } | |
1536 | ||
56ce42fa | 1537 | /* Only continue when present in every input. */ |
d433ebc6 | 1538 | if (j == setnum) { |
56ce42fa PN |
1539 | tmp = zuiObjectFromValue(&zval); |
1540 | znode = zslInsert(dstzset->zsl,score,tmp); | |
1541 | incrRefCount(tmp); /* added to skiplist */ | |
1542 | dictAdd(dstzset->dict,tmp,&znode->score); | |
1543 | incrRefCount(tmp); /* added to dictionary */ | |
255eebe2 PN |
1544 | |
1545 | if (tmp->encoding == REDIS_ENCODING_RAW) | |
1546 | if (sdslen(tmp->ptr) > maxelelen) | |
1547 | maxelelen = sdslen(tmp->ptr); | |
e2641e09 | 1548 | } |
1549 | } | |
e2641e09 | 1550 | } |
1551 | } else if (op == REDIS_OP_UNION) { | |
1552 | for (i = 0; i < setnum; i++) { | |
56ce42fa PN |
1553 | if (zuiLength(&src[0]) == 0) |
1554 | continue; | |
e2641e09 | 1555 | |
56ce42fa | 1556 | while (zuiNext(&src[i],&zval)) { |
d433ebc6 PN |
1557 | double score, value; |
1558 | ||
56ce42fa PN |
1559 | /* Skip key when already processed */ |
1560 | if (dictFind(dstzset->dict,zuiObjectFromValue(&zval)) != NULL) | |
d433ebc6 | 1561 | continue; |
e2641e09 | 1562 | |
56ce42fa PN |
1563 | /* Initialize score */ |
1564 | score = src[i].weight * zval.score; | |
e2641e09 | 1565 | |
56ce42fa PN |
1566 | /* Because the inputs are sorted by size, it's only possible |
1567 | * for sets at larger indices to hold this element. */ | |
e2641e09 | 1568 | for (j = (i+1); j < setnum; j++) { |
56ce42fa PN |
1569 | if (zuiFind(&src[j],&zval,&value)) { |
1570 | value *= src[j].weight; | |
d433ebc6 | 1571 | zunionInterAggregate(&score,value,aggregate); |
e2641e09 | 1572 | } |
1573 | } | |
1574 | ||
56ce42fa PN |
1575 | tmp = zuiObjectFromValue(&zval); |
1576 | znode = zslInsert(dstzset->zsl,score,tmp); | |
1577 | incrRefCount(zval.ele); /* added to skiplist */ | |
1578 | dictAdd(dstzset->dict,tmp,&znode->score); | |
1579 | incrRefCount(zval.ele); /* added to dictionary */ | |
255eebe2 PN |
1580 | |
1581 | if (tmp->encoding == REDIS_ENCODING_RAW) | |
1582 | if (sdslen(tmp->ptr) > maxelelen) | |
1583 | maxelelen = sdslen(tmp->ptr); | |
e2641e09 | 1584 | } |
e2641e09 | 1585 | } |
1586 | } else { | |
56ce42fa | 1587 | redisPanic("Unknown operator"); |
e2641e09 | 1588 | } |
1589 | ||
56ce42fa PN |
1590 | for (i = 0; i < setnum; i++) |
1591 | zuiClearIterator(&src[i]); | |
1592 | ||
8c1420ff | 1593 | if (dbDelete(c->db,dstkey)) { |
cea8c5cd | 1594 | signalModifiedKey(c->db,dstkey); |
8c1420ff | 1595 | touched = 1; |
1596 | server.dirty++; | |
1597 | } | |
e2641e09 | 1598 | if (dstzset->zsl->length) { |
255eebe2 PN |
1599 | /* Convert to ziplist when in limits. */ |
1600 | if (dstzset->zsl->length <= server.zset_max_ziplist_entries && | |
1601 | maxelelen <= server.zset_max_ziplist_value) | |
df26a0ae | 1602 | zsetConvert(dstobj,REDIS_ENCODING_ZIPLIST); |
255eebe2 | 1603 | |
e2641e09 | 1604 | dbAdd(c->db,dstkey,dstobj); |
df26a0ae | 1605 | addReplyLongLong(c,zsetLength(dstobj)); |
cea8c5cd | 1606 | if (!touched) signalModifiedKey(c->db,dstkey); |
cbf7e107 | 1607 | server.dirty++; |
e2641e09 | 1608 | } else { |
1609 | decrRefCount(dstobj); | |
255eebe2 | 1610 | addReply(c,shared.czero); |
e2641e09 | 1611 | } |
1612 | zfree(src); | |
1613 | } | |
1614 | ||
1615 | void zunionstoreCommand(redisClient *c) { | |
1616 | zunionInterGenericCommand(c,c->argv[1], REDIS_OP_UNION); | |
1617 | } | |
1618 | ||
1619 | void zinterstoreCommand(redisClient *c) { | |
1620 | zunionInterGenericCommand(c,c->argv[1], REDIS_OP_INTER); | |
1621 | } | |
1622 | ||
1623 | void zrangeGenericCommand(redisClient *c, int reverse) { | |
5d1b4fb6 PN |
1624 | robj *key = c->argv[1]; |
1625 | robj *zobj; | |
1626 | int withscores = 0; | |
e2641e09 | 1627 | long start; |
1628 | long end; | |
e2641e09 | 1629 | int llen; |
5d1b4fb6 | 1630 | int rangelen; |
e2641e09 | 1631 | |
1632 | if ((getLongFromObjectOrReply(c, c->argv[2], &start, NULL) != REDIS_OK) || | |
1633 | (getLongFromObjectOrReply(c, c->argv[3], &end, NULL) != REDIS_OK)) return; | |
1634 | ||
1635 | if (c->argc == 5 && !strcasecmp(c->argv[4]->ptr,"withscores")) { | |
1636 | withscores = 1; | |
1637 | } else if (c->argc >= 5) { | |
1638 | addReply(c,shared.syntaxerr); | |
1639 | return; | |
1640 | } | |
1641 | ||
5d1b4fb6 PN |
1642 | if ((zobj = lookupKeyReadOrReply(c,key,shared.emptymultibulk)) == NULL |
1643 | || checkType(c,zobj,REDIS_ZSET)) return; | |
e2641e09 | 1644 | |
5d1b4fb6 | 1645 | /* Sanitize indexes. */ |
df26a0ae | 1646 | llen = zsetLength(zobj); |
e2641e09 | 1647 | if (start < 0) start = llen+start; |
1648 | if (end < 0) end = llen+end; | |
1649 | if (start < 0) start = 0; | |
e2641e09 | 1650 | |
d0a4e24e PN |
1651 | /* Invariant: start >= 0, so this test will be true when end < 0. |
1652 | * The range is empty when start > end or start >= length. */ | |
e2641e09 | 1653 | if (start > end || start >= llen) { |
e2641e09 | 1654 | addReply(c,shared.emptymultibulk); |
1655 | return; | |
1656 | } | |
1657 | if (end >= llen) end = llen-1; | |
1658 | rangelen = (end-start)+1; | |
1659 | ||
e2641e09 | 1660 | /* Return the result in form of a multi-bulk reply */ |
5d1b4fb6 PN |
1661 | addReplyMultiBulkLen(c, withscores ? (rangelen*2) : rangelen); |
1662 | ||
1663 | if (zobj->encoding == REDIS_ENCODING_ZIPLIST) { | |
1664 | unsigned char *zl = zobj->ptr; | |
1665 | unsigned char *eptr, *sptr; | |
1666 | unsigned char *vstr; | |
1667 | unsigned int vlen; | |
1668 | long long vlong; | |
1669 | ||
1670 | if (reverse) | |
1671 | eptr = ziplistIndex(zl,-2-(2*start)); | |
1672 | else | |
1673 | eptr = ziplistIndex(zl,2*start); | |
1674 | ||
4c5f0966 PN |
1675 | redisAssert(eptr != NULL); |
1676 | sptr = ziplistNext(zl,eptr); | |
1677 | ||
5d1b4fb6 | 1678 | while (rangelen--) { |
4c5f0966 | 1679 | redisAssert(eptr != NULL && sptr != NULL); |
5d1b4fb6 PN |
1680 | redisAssert(ziplistGet(eptr,&vstr,&vlen,&vlong)); |
1681 | if (vstr == NULL) | |
1682 | addReplyBulkLongLong(c,vlong); | |
1683 | else | |
1684 | addReplyBulkCBuffer(c,vstr,vlen); | |
1685 | ||
4c5f0966 | 1686 | if (withscores) |
5d1b4fb6 | 1687 | addReplyDouble(c,zzlGetScore(sptr)); |
5d1b4fb6 | 1688 | |
4c5f0966 PN |
1689 | if (reverse) |
1690 | zzlPrev(zl,&eptr,&sptr); | |
1691 | else | |
1692 | zzlNext(zl,&eptr,&sptr); | |
5d1b4fb6 PN |
1693 | } |
1694 | ||
100ed062 | 1695 | } else if (zobj->encoding == REDIS_ENCODING_SKIPLIST) { |
5d1b4fb6 PN |
1696 | zset *zs = zobj->ptr; |
1697 | zskiplist *zsl = zs->zsl; | |
1698 | zskiplistNode *ln; | |
1699 | robj *ele; | |
1700 | ||
1701 | /* Check if starting point is trivial, before doing log(N) lookup. */ | |
1702 | if (reverse) { | |
1703 | ln = zsl->tail; | |
1704 | if (start > 0) | |
1705 | ln = zslGetElementByRank(zsl,llen-start); | |
1706 | } else { | |
1707 | ln = zsl->header->level[0].forward; | |
1708 | if (start > 0) | |
1709 | ln = zslGetElementByRank(zsl,start+1); | |
1710 | } | |
1711 | ||
1712 | while(rangelen--) { | |
1713 | redisAssert(ln != NULL); | |
1714 | ele = ln->obj; | |
1715 | addReplyBulk(c,ele); | |
1716 | if (withscores) | |
1717 | addReplyDouble(c,ln->score); | |
1718 | ln = reverse ? ln->backward : ln->level[0].forward; | |
1719 | } | |
1720 | } else { | |
1721 | redisPanic("Unknown sorted set encoding"); | |
e2641e09 | 1722 | } |
1723 | } | |
1724 | ||
1725 | void zrangeCommand(redisClient *c) { | |
1726 | zrangeGenericCommand(c,0); | |
1727 | } | |
1728 | ||
1729 | void zrevrangeCommand(redisClient *c) { | |
1730 | zrangeGenericCommand(c,1); | |
1731 | } | |
1732 | ||
25bb8a44 PN |
1733 | /* This command implements ZRANGEBYSCORE, ZREVRANGEBYSCORE and ZCOUNT. |
1734 | * If "justcount", only the number of elements in the range is returned. */ | |
1735 | void genericZrangebyscoreCommand(redisClient *c, int reverse, int justcount) { | |
1736 | zrangespec range; | |
aff255c8 PN |
1737 | robj *key = c->argv[1]; |
1738 | robj *emptyreply, *zobj; | |
e2641e09 | 1739 | int offset = 0, limit = -1; |
1740 | int withscores = 0; | |
25bb8a44 PN |
1741 | unsigned long rangelen = 0; |
1742 | void *replylen = NULL; | |
22b9bf15 | 1743 | int minidx, maxidx; |
e2641e09 | 1744 | |
25bb8a44 | 1745 | /* Parse the range arguments. */ |
22b9bf15 PN |
1746 | if (reverse) { |
1747 | /* Range is given as [max,min] */ | |
1748 | maxidx = 2; minidx = 3; | |
1749 | } else { | |
1750 | /* Range is given as [min,max] */ | |
1751 | minidx = 2; maxidx = 3; | |
1752 | } | |
1753 | ||
1754 | if (zslParseRange(c->argv[minidx],c->argv[maxidx],&range) != REDIS_OK) { | |
7236fdb2 PN |
1755 | addReplyError(c,"min or max is not a double"); |
1756 | return; | |
1757 | } | |
25bb8a44 PN |
1758 | |
1759 | /* Parse optional extra arguments. Note that ZCOUNT will exactly have | |
1760 | * 4 arguments, so we'll never enter the following code path. */ | |
1761 | if (c->argc > 4) { | |
1762 | int remaining = c->argc - 4; | |
1763 | int pos = 4; | |
1764 | ||
1765 | while (remaining) { | |
1766 | if (remaining >= 1 && !strcasecmp(c->argv[pos]->ptr,"withscores")) { | |
1767 | pos++; remaining--; | |
1768 | withscores = 1; | |
1769 | } else if (remaining >= 3 && !strcasecmp(c->argv[pos]->ptr,"limit")) { | |
1770 | offset = atoi(c->argv[pos+1]->ptr); | |
1771 | limit = atoi(c->argv[pos+2]->ptr); | |
1772 | pos += 3; remaining -= 3; | |
1773 | } else { | |
1774 | addReply(c,shared.syntaxerr); | |
1775 | return; | |
1776 | } | |
1777 | } | |
e2641e09 | 1778 | } |
25bb8a44 PN |
1779 | |
1780 | /* Ok, lookup the key and get the range */ | |
1781 | emptyreply = justcount ? shared.czero : shared.emptymultibulk; | |
aff255c8 PN |
1782 | if ((zobj = lookupKeyReadOrReply(c,key,emptyreply)) == NULL || |
1783 | checkType(c,zobj,REDIS_ZSET)) return; | |
25bb8a44 | 1784 | |
aff255c8 PN |
1785 | if (zobj->encoding == REDIS_ENCODING_ZIPLIST) { |
1786 | unsigned char *zl = zobj->ptr; | |
1787 | unsigned char *eptr, *sptr; | |
1788 | unsigned char *vstr; | |
1789 | unsigned int vlen; | |
1790 | long long vlong; | |
1791 | double score; | |
e2641e09 | 1792 | |
aff255c8 PN |
1793 | /* If reversed, get the last node in range as starting point. */ |
1794 | if (reverse) | |
8588bfa3 | 1795 | eptr = zzlLastInRange(zl,range); |
aff255c8 | 1796 | else |
8588bfa3 | 1797 | eptr = zzlFirstInRange(zl,range); |
e2641e09 | 1798 | |
aff255c8 PN |
1799 | /* No "first" element in the specified interval. */ |
1800 | if (eptr == NULL) { | |
1801 | addReply(c,emptyreply); | |
1802 | return; | |
1803 | } | |
e2641e09 | 1804 | |
aff255c8 PN |
1805 | /* Get score pointer for the first element. */ |
1806 | redisAssert(eptr != NULL); | |
1807 | sptr = ziplistNext(zl,eptr); | |
e2641e09 | 1808 | |
aff255c8 PN |
1809 | /* We don't know in advance how many matching elements there are in the |
1810 | * list, so we push this object that will represent the multi-bulk | |
1811 | * length in the output buffer, and will "fix" it later */ | |
1812 | if (!justcount) | |
1813 | replylen = addDeferredMultiBulkLength(c); | |
1814 | ||
1815 | /* If there is an offset, just traverse the number of elements without | |
1816 | * checking the score because that is done in the next loop. */ | |
1817 | while (eptr && offset--) | |
1818 | if (reverse) | |
1819 | zzlPrev(zl,&eptr,&sptr); | |
1820 | else | |
1821 | zzlNext(zl,&eptr,&sptr); | |
1822 | ||
1823 | while (eptr && limit--) { | |
1824 | score = zzlGetScore(sptr); | |
1825 | ||
1826 | /* Abort when the node is no longer in range. */ | |
1827 | if (reverse) { | |
1828 | if (!zslValueGteMin(score,&range)) break; | |
1829 | } else { | |
1830 | if (!zslValueLteMax(score,&range)) break; | |
1831 | } | |
1832 | ||
1833 | /* Do our magic */ | |
1834 | rangelen++; | |
1835 | if (!justcount) { | |
1836 | redisAssert(ziplistGet(eptr,&vstr,&vlen,&vlong)); | |
1837 | if (vstr == NULL) | |
1838 | addReplyBulkLongLong(c,vlong); | |
1839 | else | |
1840 | addReplyBulkCBuffer(c,vstr,vlen); | |
1841 | ||
1842 | if (withscores) | |
1843 | addReplyDouble(c,score); | |
1844 | } | |
1845 | ||
1846 | /* Move to next node */ | |
1847 | if (reverse) | |
1848 | zzlPrev(zl,&eptr,&sptr); | |
1849 | else | |
1850 | zzlNext(zl,&eptr,&sptr); | |
e2641e09 | 1851 | } |
100ed062 | 1852 | } else if (zobj->encoding == REDIS_ENCODING_SKIPLIST) { |
aff255c8 PN |
1853 | zset *zs = zobj->ptr; |
1854 | zskiplist *zsl = zs->zsl; | |
1855 | zskiplistNode *ln; | |
25bb8a44 | 1856 | |
aff255c8 PN |
1857 | /* If reversed, get the last node in range as starting point. */ |
1858 | if (reverse) | |
1859 | ln = zslLastInRange(zsl,range); | |
1860 | else | |
1861 | ln = zslFirstInRange(zsl,range); | |
1862 | ||
1863 | /* No "first" element in the specified interval. */ | |
1864 | if (ln == NULL) { | |
1865 | addReply(c,emptyreply); | |
1866 | return; | |
25bb8a44 PN |
1867 | } |
1868 | ||
aff255c8 PN |
1869 | /* We don't know in advance how many matching elements there are in the |
1870 | * list, so we push this object that will represent the multi-bulk | |
1871 | * length in the output buffer, and will "fix" it later */ | |
1872 | if (!justcount) | |
1873 | replylen = addDeferredMultiBulkLength(c); | |
1874 | ||
1875 | /* If there is an offset, just traverse the number of elements without | |
1876 | * checking the score because that is done in the next loop. */ | |
1877 | while (ln && offset--) | |
1878 | ln = reverse ? ln->backward : ln->level[0].forward; | |
1879 | ||
1880 | while (ln && limit--) { | |
1881 | /* Abort when the node is no longer in range. */ | |
1882 | if (reverse) { | |
1883 | if (!zslValueGteMin(ln->score,&range)) break; | |
1884 | } else { | |
1885 | if (!zslValueLteMax(ln->score,&range)) break; | |
1886 | } | |
1887 | ||
1888 | /* Do our magic */ | |
1889 | rangelen++; | |
1890 | if (!justcount) { | |
1891 | addReplyBulk(c,ln->obj); | |
1892 | if (withscores) | |
1893 | addReplyDouble(c,ln->score); | |
1894 | } | |
1895 | ||
1896 | /* Move to next node */ | |
1897 | ln = reverse ? ln->backward : ln->level[0].forward; | |
1898 | } | |
1899 | } else { | |
1900 | redisPanic("Unknown sorted set encoding"); | |
25bb8a44 PN |
1901 | } |
1902 | ||
1903 | if (justcount) { | |
1904 | addReplyLongLong(c,(long)rangelen); | |
1905 | } else { | |
aff255c8 PN |
1906 | if (withscores) rangelen *= 2; |
1907 | setDeferredMultiBulkLength(c,replylen,rangelen); | |
e2641e09 | 1908 | } |
1909 | } | |
1910 | ||
1911 | void zrangebyscoreCommand(redisClient *c) { | |
25bb8a44 PN |
1912 | genericZrangebyscoreCommand(c,0,0); |
1913 | } | |
1914 | ||
1915 | void zrevrangebyscoreCommand(redisClient *c) { | |
1916 | genericZrangebyscoreCommand(c,1,0); | |
e2641e09 | 1917 | } |
1918 | ||
1919 | void zcountCommand(redisClient *c) { | |
25bb8a44 | 1920 | genericZrangebyscoreCommand(c,0,1); |
e2641e09 | 1921 | } |
1922 | ||
1923 | void zcardCommand(redisClient *c) { | |
d1c920c5 PN |
1924 | robj *key = c->argv[1]; |
1925 | robj *zobj; | |
e2641e09 | 1926 | |
d1c920c5 PN |
1927 | if ((zobj = lookupKeyReadOrReply(c,key,shared.czero)) == NULL || |
1928 | checkType(c,zobj,REDIS_ZSET)) return; | |
e2641e09 | 1929 | |
df26a0ae | 1930 | addReplyLongLong(c,zsetLength(zobj)); |
e2641e09 | 1931 | } |
1932 | ||
1933 | void zscoreCommand(redisClient *c) { | |
d1c920c5 PN |
1934 | robj *key = c->argv[1]; |
1935 | robj *zobj; | |
1936 | double score; | |
e2641e09 | 1937 | |
d1c920c5 PN |
1938 | if ((zobj = lookupKeyReadOrReply(c,key,shared.nullbulk)) == NULL || |
1939 | checkType(c,zobj,REDIS_ZSET)) return; | |
e2641e09 | 1940 | |
d1c920c5 | 1941 | if (zobj->encoding == REDIS_ENCODING_ZIPLIST) { |
8588bfa3 | 1942 | if (zzlFind(zobj->ptr,c->argv[2],&score) != NULL) |
d1c920c5 PN |
1943 | addReplyDouble(c,score); |
1944 | else | |
1945 | addReply(c,shared.nullbulk); | |
100ed062 | 1946 | } else if (zobj->encoding == REDIS_ENCODING_SKIPLIST) { |
d1c920c5 PN |
1947 | zset *zs = zobj->ptr; |
1948 | dictEntry *de; | |
e2641e09 | 1949 | |
d1c920c5 PN |
1950 | c->argv[2] = tryObjectEncoding(c->argv[2]); |
1951 | de = dictFind(zs->dict,c->argv[2]); | |
1952 | if (de != NULL) { | |
1953 | score = *(double*)dictGetEntryVal(de); | |
1954 | addReplyDouble(c,score); | |
1955 | } else { | |
1956 | addReply(c,shared.nullbulk); | |
1957 | } | |
1958 | } else { | |
1959 | redisPanic("Unknown sorted set encoding"); | |
e2641e09 | 1960 | } |
1961 | } | |
1962 | ||
1963 | void zrankGenericCommand(redisClient *c, int reverse) { | |
d1c920c5 PN |
1964 | robj *key = c->argv[1]; |
1965 | robj *ele = c->argv[2]; | |
1966 | robj *zobj; | |
1967 | unsigned long llen; | |
e2641e09 | 1968 | unsigned long rank; |
e2641e09 | 1969 | |
d1c920c5 PN |
1970 | if ((zobj = lookupKeyReadOrReply(c,key,shared.nullbulk)) == NULL || |
1971 | checkType(c,zobj,REDIS_ZSET)) return; | |
df26a0ae | 1972 | llen = zsetLength(zobj); |
e2641e09 | 1973 | |
d1c920c5 PN |
1974 | redisAssert(ele->encoding == REDIS_ENCODING_RAW); |
1975 | if (zobj->encoding == REDIS_ENCODING_ZIPLIST) { | |
1976 | unsigned char *zl = zobj->ptr; | |
1977 | unsigned char *eptr, *sptr; | |
e2641e09 | 1978 | |
d1c920c5 PN |
1979 | eptr = ziplistIndex(zl,0); |
1980 | redisAssert(eptr != NULL); | |
1981 | sptr = ziplistNext(zl,eptr); | |
1982 | redisAssert(sptr != NULL); | |
1983 | ||
1984 | rank = 1; | |
1985 | while(eptr != NULL) { | |
1986 | if (ziplistCompare(eptr,ele->ptr,sdslen(ele->ptr))) | |
1987 | break; | |
1988 | rank++; | |
1989 | zzlNext(zl,&eptr,&sptr); | |
1990 | } | |
1991 | ||
1992 | if (eptr != NULL) { | |
1993 | if (reverse) | |
1994 | addReplyLongLong(c,llen-rank); | |
1995 | else | |
1996 | addReplyLongLong(c,rank-1); | |
e2641e09 | 1997 | } else { |
d1c920c5 PN |
1998 | addReply(c,shared.nullbulk); |
1999 | } | |
100ed062 | 2000 | } else if (zobj->encoding == REDIS_ENCODING_SKIPLIST) { |
d1c920c5 PN |
2001 | zset *zs = zobj->ptr; |
2002 | zskiplist *zsl = zs->zsl; | |
2003 | dictEntry *de; | |
2004 | double score; | |
2005 | ||
2006 | ele = c->argv[2] = tryObjectEncoding(c->argv[2]); | |
2007 | de = dictFind(zs->dict,ele); | |
2008 | if (de != NULL) { | |
2009 | score = *(double*)dictGetEntryVal(de); | |
2010 | rank = zslGetRank(zsl,score,ele); | |
2011 | redisAssert(rank); /* Existing elements always have a rank. */ | |
2012 | if (reverse) | |
2013 | addReplyLongLong(c,llen-rank); | |
2014 | else | |
2015 | addReplyLongLong(c,rank-1); | |
2016 | } else { | |
2017 | addReply(c,shared.nullbulk); | |
e2641e09 | 2018 | } |
2019 | } else { | |
d1c920c5 | 2020 | redisPanic("Unknown sorted set encoding"); |
e2641e09 | 2021 | } |
2022 | } | |
2023 | ||
2024 | void zrankCommand(redisClient *c) { | |
2025 | zrankGenericCommand(c, 0); | |
2026 | } | |
2027 | ||
2028 | void zrevrankCommand(redisClient *c) { | |
2029 | zrankGenericCommand(c, 1); | |
2030 | } |