t_zset.c 70.5 KB
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/*
 * Copyright (c) 2009-2012, Salvatore Sanfilippo <antirez at gmail dot com>
 * Copyright (c) 2009-2012, Pieter Noordhuis <pcnoordhuis at gmail dot com>
 * All rights reserved.
 *
 * Redistribution and use in source and binary forms, with or without
 * modification, are permitted provided that the following conditions are met:
 *
 *   * Redistributions of source code must retain the above copyright notice,
 *     this list of conditions and the following disclaimer.
 *   * Redistributions in binary form must reproduce the above copyright
 *     notice, this list of conditions and the following disclaimer in the
 *     documentation and/or other materials provided with the distribution.
 *   * Neither the name of Redis nor the names of its contributors may be used
 *     to endorse or promote products derived from this software without
 *     specific prior written permission.
 *
 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
 * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
 * ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE
 * LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
 * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
 * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
 * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
 * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
 * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
 * POSSIBILITY OF SUCH DAMAGE.
 */
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/*-----------------------------------------------------------------------------
 * Sorted set API
 *----------------------------------------------------------------------------*/

/* ZSETs are ordered sets using two data structures to hold the same elements
 * in order to get O(log(N)) INSERT and REMOVE operations into a sorted
 * data structure.
 *
 * The elements are added to an hash table mapping Redis objects to scores.
 * At the same time the elements are added to a skip list mapping scores
 * to Redis objects (so objects are sorted by scores in this "view"). */

/* This skiplist implementation is almost a C translation of the original
 * algorithm described by William Pugh in "Skip Lists: A Probabilistic
 * Alternative to Balanced Trees", modified in three ways:
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 * a) this implementation allows for repeated scores.
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 * b) the comparison is not just by key (our 'score') but by satellite data.
 * c) there is a back pointer, so it's a doubly linked list with the back
 * pointers being only at "level 1". This allows to traverse the list
 * from tail to head, useful for ZREVRANGE. */

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#include "redis.h"
#include <math.h>

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zskiplistNode *zslCreateNode(int level, double score, robj *obj) {
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    zskiplistNode *zn = zmalloc(sizeof(*zn)+level*sizeof(struct zskiplistLevel));
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    zn->score = score;
    zn->obj = obj;
    return zn;
}

zskiplist *zslCreate(void) {
    int j;
    zskiplist *zsl;

    zsl = zmalloc(sizeof(*zsl));
    zsl->level = 1;
    zsl->length = 0;
    zsl->header = zslCreateNode(ZSKIPLIST_MAXLEVEL,0,NULL);
    for (j = 0; j < ZSKIPLIST_MAXLEVEL; j++) {
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        zsl->header->level[j].forward = NULL;
        zsl->header->level[j].span = 0;
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    }
    zsl->header->backward = NULL;
    zsl->tail = NULL;
    return zsl;
}

void zslFreeNode(zskiplistNode *node) {
    decrRefCount(node->obj);
    zfree(node);
}

void zslFree(zskiplist *zsl) {
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    zskiplistNode *node = zsl->header->level[0].forward, *next;
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    zfree(zsl->header);
    while(node) {
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        next = node->level[0].forward;
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        zslFreeNode(node);
        node = next;
    }
    zfree(zsl);
}

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/* Returns a random level for the new skiplist node we are going to create.
 * The return value of this function is between 1 and ZSKIPLIST_MAXLEVEL
 * (both inclusive), with a powerlaw-alike distribution where higher
 * levels are less likely to be returned. */
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int zslRandomLevel(void) {
    int level = 1;
    while ((random()&0xFFFF) < (ZSKIPLIST_P * 0xFFFF))
        level += 1;
    return (level<ZSKIPLIST_MAXLEVEL) ? level : ZSKIPLIST_MAXLEVEL;
}

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zskiplistNode *zslInsert(zskiplist *zsl, double score, robj *obj) {
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    zskiplistNode *update[ZSKIPLIST_MAXLEVEL], *x;
    unsigned int rank[ZSKIPLIST_MAXLEVEL];
    int i, level;

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    redisAssert(!isnan(score));
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    x = zsl->header;
    for (i = zsl->level-1; i >= 0; i--) {
        /* store rank that is crossed to reach the insert position */
        rank[i] = i == (zsl->level-1) ? 0 : rank[i+1];
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        while (x->level[i].forward &&
            (x->level[i].forward->score < score ||
                (x->level[i].forward->score == score &&
                compareStringObjects(x->level[i].forward->obj,obj) < 0))) {
            rank[i] += x->level[i].span;
            x = x->level[i].forward;
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        }
        update[i] = x;
    }
    /* we assume the key is not already inside, since we allow duplicated
     * scores, and the re-insertion of score and redis object should never
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     * happen since the caller of zslInsert() should test in the hash table
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     * if the element is already inside or not. */
    level = zslRandomLevel();
    if (level > zsl->level) {
        for (i = zsl->level; i < level; i++) {
            rank[i] = 0;
            update[i] = zsl->header;
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            update[i]->level[i].span = zsl->length;
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        }
        zsl->level = level;
    }
    x = zslCreateNode(level,score,obj);
    for (i = 0; i < level; i++) {
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        x->level[i].forward = update[i]->level[i].forward;
        update[i]->level[i].forward = x;
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        /* update span covered by update[i] as x is inserted here */
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        x->level[i].span = update[i]->level[i].span - (rank[0] - rank[i]);
        update[i]->level[i].span = (rank[0] - rank[i]) + 1;
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    }

    /* increment span for untouched levels */
    for (i = level; i < zsl->level; i++) {
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        update[i]->level[i].span++;
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    }

    x->backward = (update[0] == zsl->header) ? NULL : update[0];
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    if (x->level[0].forward)
        x->level[0].forward->backward = x;
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    else
        zsl->tail = x;
    zsl->length++;
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    return x;
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}

/* Internal function used by zslDelete, zslDeleteByScore and zslDeleteByRank */
void zslDeleteNode(zskiplist *zsl, zskiplistNode *x, zskiplistNode **update) {
    int i;
    for (i = 0; i < zsl->level; i++) {
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        if (update[i]->level[i].forward == x) {
            update[i]->level[i].span += x->level[i].span - 1;
            update[i]->level[i].forward = x->level[i].forward;
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        } else {
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            update[i]->level[i].span -= 1;
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        }
    }
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    if (x->level[0].forward) {
        x->level[0].forward->backward = x->backward;
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    } else {
        zsl->tail = x->backward;
    }
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    while(zsl->level > 1 && zsl->header->level[zsl->level-1].forward == NULL)
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        zsl->level--;
    zsl->length--;
}

/* Delete an element with matching score/object from the skiplist. */
int zslDelete(zskiplist *zsl, double score, robj *obj) {
    zskiplistNode *update[ZSKIPLIST_MAXLEVEL], *x;
    int i;

    x = zsl->header;
    for (i = zsl->level-1; i >= 0; i--) {
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        while (x->level[i].forward &&
            (x->level[i].forward->score < score ||
                (x->level[i].forward->score == score &&
                compareStringObjects(x->level[i].forward->obj,obj) < 0)))
            x = x->level[i].forward;
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        update[i] = x;
    }
    /* We may have multiple elements with the same score, what we need
     * is to find the element with both the right score and object. */
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    x = x->level[0].forward;
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    if (x && score == x->score && equalStringObjects(x->obj,obj)) {
        zslDeleteNode(zsl, x, update);
        zslFreeNode(x);
        return 1;
    } else {
        return 0; /* not found */
    }
    return 0; /* not found */
}

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static int zslValueGteMin(double value, zrangespec *spec) {
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    return spec->minex ? (value > spec->min) : (value >= spec->min);
}

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static int zslValueLteMax(double value, zrangespec *spec) {
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    return spec->maxex ? (value < spec->max) : (value <= spec->max);
}

/* Returns if there is a part of the zset is in range. */
int zslIsInRange(zskiplist *zsl, zrangespec *range) {
    zskiplistNode *x;

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    /* Test for ranges that will always be empty. */
    if (range->min > range->max ||
            (range->min == range->max && (range->minex || range->maxex)))
        return 0;
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    x = zsl->tail;
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    if (x == NULL || !zslValueGteMin(x->score,range))
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        return 0;
    x = zsl->header->level[0].forward;
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    if (x == NULL || !zslValueLteMax(x->score,range))
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        return 0;
    return 1;
}

/* Find the first node that is contained in the specified range.
 * Returns NULL when no element is contained in the range. */
zskiplistNode *zslFirstInRange(zskiplist *zsl, zrangespec range) {
    zskiplistNode *x;
    int i;

    /* If everything is out of range, return early. */
    if (!zslIsInRange(zsl,&range)) return NULL;

    x = zsl->header;
    for (i = zsl->level-1; i >= 0; i--) {
        /* Go forward while *OUT* of range. */
        while (x->level[i].forward &&
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            !zslValueGteMin(x->level[i].forward->score,&range))
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                x = x->level[i].forward;
    }

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    /* This is an inner range, so the next node cannot be NULL. */
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    x = x->level[0].forward;
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    redisAssert(x != NULL);

    /* Check if score <= max. */
    if (!zslValueLteMax(x->score,&range)) return NULL;
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    return x;
}

/* Find the last node that is contained in the specified range.
 * Returns NULL when no element is contained in the range. */
zskiplistNode *zslLastInRange(zskiplist *zsl, zrangespec range) {
    zskiplistNode *x;
    int i;

    /* If everything is out of range, return early. */
    if (!zslIsInRange(zsl,&range)) return NULL;

    x = zsl->header;
    for (i = zsl->level-1; i >= 0; i--) {
        /* Go forward while *IN* range. */
        while (x->level[i].forward &&
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            zslValueLteMax(x->level[i].forward->score,&range))
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                x = x->level[i].forward;
    }

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    /* This is an inner range, so this node cannot be NULL. */
    redisAssert(x != NULL);

    /* Check if score >= min. */
    if (!zslValueGteMin(x->score,&range)) return NULL;
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    return x;
}

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/* Delete all the elements with score between min and max from the skiplist.
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 * Min and max are inclusive, so a score >= min || score <= max is deleted.
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 * Note that this function takes the reference to the hash table view of the
 * sorted set, in order to remove the elements from the hash table too. */
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unsigned long zslDeleteRangeByScore(zskiplist *zsl, zrangespec range, dict *dict) {
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    zskiplistNode *update[ZSKIPLIST_MAXLEVEL], *x;
    unsigned long removed = 0;
    int i;

    x = zsl->header;
    for (i = zsl->level-1; i >= 0; i--) {
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        while (x->level[i].forward && (range.minex ?
            x->level[i].forward->score <= range.min :
            x->level[i].forward->score < range.min))
                x = x->level[i].forward;
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        update[i] = x;
    }
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    /* Current node is the last with score < or <= min. */
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    x = x->level[0].forward;
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    /* Delete nodes while in range. */
    while (x && (range.maxex ? x->score < range.max : x->score <= range.max)) {
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        zskiplistNode *next = x->level[0].forward;
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        zslDeleteNode(zsl,x,update);
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        dictDelete(dict,x->obj);
        zslFreeNode(x);
        removed++;
        x = next;
    }
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    return removed;
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}

/* Delete all the elements with rank between start and end from the skiplist.
 * Start and end are inclusive. Note that start and end need to be 1-based */
unsigned long zslDeleteRangeByRank(zskiplist *zsl, unsigned int start, unsigned int end, dict *dict) {
    zskiplistNode *update[ZSKIPLIST_MAXLEVEL], *x;
    unsigned long traversed = 0, removed = 0;
    int i;

    x = zsl->header;
    for (i = zsl->level-1; i >= 0; i--) {
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        while (x->level[i].forward && (traversed + x->level[i].span) < start) {
            traversed += x->level[i].span;
            x = x->level[i].forward;
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        }
        update[i] = x;
    }

    traversed++;
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    x = x->level[0].forward;
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    while (x && traversed <= end) {
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        zskiplistNode *next = x->level[0].forward;
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        zslDeleteNode(zsl,x,update);
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        dictDelete(dict,x->obj);
        zslFreeNode(x);
        removed++;
        traversed++;
        x = next;
    }
    return removed;
}

/* Find the rank for an element by both score and key.
 * Returns 0 when the element cannot be found, rank otherwise.
 * Note that the rank is 1-based due to the span of zsl->header to the
 * first element. */
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unsigned long zslGetRank(zskiplist *zsl, double score, robj *o) {
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    zskiplistNode *x;
    unsigned long rank = 0;
    int i;

    x = zsl->header;
    for (i = zsl->level-1; i >= 0; i--) {
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        while (x->level[i].forward &&
            (x->level[i].forward->score < score ||
                (x->level[i].forward->score == score &&
                compareStringObjects(x->level[i].forward->obj,o) <= 0))) {
            rank += x->level[i].span;
            x = x->level[i].forward;
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        }

        /* x might be equal to zsl->header, so test if obj is non-NULL */
        if (x->obj && equalStringObjects(x->obj,o)) {
            return rank;
        }
    }
    return 0;
}

/* Finds an element by its rank. The rank argument needs to be 1-based. */
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zskiplistNode* zslGetElementByRank(zskiplist *zsl, unsigned long rank) {
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    zskiplistNode *x;
    unsigned long traversed = 0;
    int i;

    x = zsl->header;
    for (i = zsl->level-1; i >= 0; i--) {
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        while (x->level[i].forward && (traversed + x->level[i].span) <= rank)
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        {
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            traversed += x->level[i].span;
            x = x->level[i].forward;
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        }
        if (traversed == rank) {
            return x;
        }
    }
    return NULL;
}

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/* Populate the rangespec according to the objects min and max. */
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static int zslParseRange(robj *min, robj *max, zrangespec *spec) {
    char *eptr;
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    spec->minex = spec->maxex = 0;

    /* Parse the min-max interval. If one of the values is prefixed
     * by the "(" character, it's considered "open". For instance
     * ZRANGEBYSCORE zset (1.5 (2.5 will match min < x < max
     * ZRANGEBYSCORE zset 1.5 2.5 will instead match min <= x <= max */
    if (min->encoding == REDIS_ENCODING_INT) {
        spec->min = (long)min->ptr;
    } else {
        if (((char*)min->ptr)[0] == '(') {
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            spec->min = strtod((char*)min->ptr+1,&eptr);
            if (eptr[0] != '\0' || isnan(spec->min)) return REDIS_ERR;
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            spec->minex = 1;
        } else {
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            spec->min = strtod((char*)min->ptr,&eptr);
            if (eptr[0] != '\0' || isnan(spec->min)) return REDIS_ERR;
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        }
    }
    if (max->encoding == REDIS_ENCODING_INT) {
        spec->max = (long)max->ptr;
    } else {
        if (((char*)max->ptr)[0] == '(') {
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            spec->max = strtod((char*)max->ptr+1,&eptr);
            if (eptr[0] != '\0' || isnan(spec->max)) return REDIS_ERR;
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            spec->maxex = 1;
        } else {
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            spec->max = strtod((char*)max->ptr,&eptr);
            if (eptr[0] != '\0' || isnan(spec->max)) return REDIS_ERR;
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        }
    }

    return REDIS_OK;
}

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/*-----------------------------------------------------------------------------
 * Ziplist-backed sorted set API
 *----------------------------------------------------------------------------*/

double zzlGetScore(unsigned char *sptr) {
    unsigned char *vstr;
    unsigned int vlen;
    long long vlong;
    char buf[128];
    double score;

    redisAssert(sptr != NULL);
    redisAssert(ziplistGet(sptr,&vstr,&vlen,&vlong));

    if (vstr) {
        memcpy(buf,vstr,vlen);
        buf[vlen] = '\0';
        score = strtod(buf,NULL);
    } else {
        score = vlong;
    }

    return score;
}

/* Compare element in sorted set with given element. */
int zzlCompareElements(unsigned char *eptr, unsigned char *cstr, unsigned int clen) {
    unsigned char *vstr;
    unsigned int vlen;
    long long vlong;
    unsigned char vbuf[32];
    int minlen, cmp;

    redisAssert(ziplistGet(eptr,&vstr,&vlen,&vlong));
    if (vstr == NULL) {
        /* Store string representation of long long in buf. */
        vlen = ll2string((char*)vbuf,sizeof(vbuf),vlong);
        vstr = vbuf;
    }

    minlen = (vlen < clen) ? vlen : clen;
    cmp = memcmp(vstr,cstr,minlen);
    if (cmp == 0) return vlen-clen;
    return cmp;
}

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unsigned int zzlLength(unsigned char *zl) {
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    return ziplistLen(zl)/2;
}

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/* Move to next entry based on the values in eptr and sptr. Both are set to
 * NULL when there is no next entry. */
void zzlNext(unsigned char *zl, unsigned char **eptr, unsigned char **sptr) {
    unsigned char *_eptr, *_sptr;
    redisAssert(*eptr != NULL && *sptr != NULL);

    _eptr = ziplistNext(zl,*sptr);
    if (_eptr != NULL) {
        _sptr = ziplistNext(zl,_eptr);
        redisAssert(_sptr != NULL);
    } else {
        /* No next entry. */
        _sptr = NULL;
    }

    *eptr = _eptr;
    *sptr = _sptr;
}

/* Move to the previous entry based on the values in eptr and sptr. Both are
 * set to NULL when there is no next entry. */
void zzlPrev(unsigned char *zl, unsigned char **eptr, unsigned char **sptr) {
    unsigned char *_eptr, *_sptr;
    redisAssert(*eptr != NULL && *sptr != NULL);

    _sptr = ziplistPrev(zl,*eptr);
    if (_sptr != NULL) {
        _eptr = ziplistPrev(zl,_sptr);
        redisAssert(_eptr != NULL);
    } else {
        /* No previous entry. */
        _eptr = NULL;
    }

    *eptr = _eptr;
    *sptr = _sptr;
}

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/* Returns if there is a part of the zset is in range. Should only be used
 * internally by zzlFirstInRange and zzlLastInRange. */
int zzlIsInRange(unsigned char *zl, zrangespec *range) {
    unsigned char *p;
    double score;

    /* Test for ranges that will always be empty. */
    if (range->min > range->max ||
            (range->min == range->max && (range->minex || range->maxex)))
        return 0;

    p = ziplistIndex(zl,-1); /* Last score. */
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    if (p == NULL) return 0; /* Empty sorted set */
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    score = zzlGetScore(p);
    if (!zslValueGteMin(score,range))
        return 0;

    p = ziplistIndex(zl,1); /* First score. */
    redisAssert(p != NULL);
    score = zzlGetScore(p);
    if (!zslValueLteMax(score,range))
        return 0;

    return 1;
}

/* Find pointer to the first element contained in the specified range.
 * Returns NULL when no element is contained in the range. */
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unsigned char *zzlFirstInRange(unsigned char *zl, zrangespec range) {
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    unsigned char *eptr = ziplistIndex(zl,0), *sptr;
    double score;

    /* If everything is out of range, return early. */
    if (!zzlIsInRange(zl,&range)) return NULL;

    while (eptr != NULL) {
        sptr = ziplistNext(zl,eptr);
        redisAssert(sptr != NULL);

        score = zzlGetScore(sptr);
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        if (zslValueGteMin(score,&range)) {
            /* Check if score <= max. */
            if (zslValueLteMax(score,&range))
                return eptr;
            return NULL;
        }
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        /* Move to next element. */
        eptr = ziplistNext(zl,sptr);
    }

    return NULL;
}

/* Find pointer to the last element contained in the specified range.
 * Returns NULL when no element is contained in the range. */
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unsigned char *zzlLastInRange(unsigned char *zl, zrangespec range) {
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    unsigned char *eptr = ziplistIndex(zl,-2), *sptr;
    double score;

    /* If everything is out of range, return early. */
    if (!zzlIsInRange(zl,&range)) return NULL;

    while (eptr != NULL) {
        sptr = ziplistNext(zl,eptr);
        redisAssert(sptr != NULL);

        score = zzlGetScore(sptr);
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        if (zslValueLteMax(score,&range)) {
            /* Check if score >= min. */
            if (zslValueGteMin(score,&range))
                return eptr;
            return NULL;
        }
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        /* Move to previous element by moving to the score of previous element.
         * When this returns NULL, we know there also is no element. */
        sptr = ziplistPrev(zl,eptr);
        if (sptr != NULL)
            redisAssert((eptr = ziplistPrev(zl,sptr)) != NULL);
        else
            eptr = NULL;
    }

    return NULL;
}

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unsigned char *zzlFind(unsigned char *zl, robj *ele, double *score) {
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    unsigned char *eptr = ziplistIndex(zl,0), *sptr;

    ele = getDecodedObject(ele);
    while (eptr != NULL) {
        sptr = ziplistNext(zl,eptr);
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        redisAssertWithInfo(NULL,ele,sptr != NULL);
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        if (ziplistCompare(eptr,ele->ptr,sdslen(ele->ptr))) {
            /* Matching element, pull out score. */
P
Pieter Noordhuis 已提交
619
            if (score != NULL) *score = zzlGetScore(sptr);
620 621 622 623 624 625 626 627 628 629 630 631 632 633
            decrRefCount(ele);
            return eptr;
        }

        /* Move to next element. */
        eptr = ziplistNext(zl,sptr);
    }

    decrRefCount(ele);
    return NULL;
}

/* Delete (element,score) pair from ziplist. Use local copy of eptr because we
 * don't want to modify the one given as argument. */
634
unsigned char *zzlDelete(unsigned char *zl, unsigned char *eptr) {
635 636 637 638 639
    unsigned char *p = eptr;

    /* TODO: add function to ziplist API to delete N elements from offset. */
    zl = ziplistDelete(zl,&p);
    zl = ziplistDelete(zl,&p);
640
    return zl;
641 642
}

643
unsigned char *zzlInsertAt(unsigned char *zl, unsigned char *eptr, robj *ele, double score) {
644 645 646
    unsigned char *sptr;
    char scorebuf[128];
    int scorelen;
P
Pieter Noordhuis 已提交
647
    size_t offset;
648

649
    redisAssertWithInfo(NULL,ele,ele->encoding == REDIS_ENCODING_RAW);
650 651 652 653 654 655 656 657 658 659 660
    scorelen = d2string(scorebuf,sizeof(scorebuf),score);
    if (eptr == NULL) {
        zl = ziplistPush(zl,ele->ptr,sdslen(ele->ptr),ZIPLIST_TAIL);
        zl = ziplistPush(zl,(unsigned char*)scorebuf,scorelen,ZIPLIST_TAIL);
    } else {
        /* Keep offset relative to zl, as it might be re-allocated. */
        offset = eptr-zl;
        zl = ziplistInsert(zl,eptr,ele->ptr,sdslen(ele->ptr));
        eptr = zl+offset;

        /* Insert score after the element. */
661
        redisAssertWithInfo(NULL,ele,(sptr = ziplistNext(zl,eptr)) != NULL);
662 663 664
        zl = ziplistInsert(zl,sptr,(unsigned char*)scorebuf,scorelen);
    }

665
    return zl;
666 667 668 669
}

/* Insert (element,score) pair in ziplist. This function assumes the element is
 * not yet present in the list. */
670
unsigned char *zzlInsert(unsigned char *zl, robj *ele, double score) {
671 672 673 674 675 676
    unsigned char *eptr = ziplistIndex(zl,0), *sptr;
    double s;

    ele = getDecodedObject(ele);
    while (eptr != NULL) {
        sptr = ziplistNext(zl,eptr);
677
        redisAssertWithInfo(NULL,ele,sptr != NULL);
678 679 680 681 682 683
        s = zzlGetScore(sptr);

        if (s > score) {
            /* First element with score larger than score for element to be
             * inserted. This means we should take its spot in the list to
             * maintain ordering. */
684
            zl = zzlInsertAt(zl,eptr,ele,score);
685
            break;
P
Pieter Noordhuis 已提交
686 687
        } else if (s == score) {
            /* Ensure lexicographical ordering for elements. */
688
            if (zzlCompareElements(eptr,ele->ptr,sdslen(ele->ptr)) > 0) {
689
                zl = zzlInsertAt(zl,eptr,ele,score);
P
Pieter Noordhuis 已提交
690 691
                break;
            }
692 693 694 695 696 697 698
        }

        /* Move to next element. */
        eptr = ziplistNext(zl,sptr);
    }

    /* Push on tail of list when it was not yet inserted. */
P
Pieter Noordhuis 已提交
699
    if (eptr == NULL)
700
        zl = zzlInsertAt(zl,NULL,ele,score);
701 702

    decrRefCount(ele);
703
    return zl;
704
}
705

706
unsigned char *zzlDeleteRangeByScore(unsigned char *zl, zrangespec range, unsigned long *deleted) {
707 708
    unsigned char *eptr, *sptr;
    double score;
709
    unsigned long num = 0;
710

711
    if (deleted != NULL) *deleted = 0;
712

713 714
    eptr = zzlFirstInRange(zl,range);
    if (eptr == NULL) return zl;
715 716 717 718 719 720 721 722 723

    /* When the tail of the ziplist is deleted, eptr will point to the sentinel
     * byte and ziplistNext will return NULL. */
    while ((sptr = ziplistNext(zl,eptr)) != NULL) {
        score = zzlGetScore(sptr);
        if (zslValueLteMax(score,&range)) {
            /* Delete both the element and the score. */
            zl = ziplistDelete(zl,&eptr);
            zl = ziplistDelete(zl,&eptr);
724
            num++;
725 726 727 728 729 730
        } else {
            /* No longer in range. */
            break;
        }
    }

731 732
    if (deleted != NULL) *deleted = num;
    return zl;
733 734
}

735 736
/* Delete all the elements with rank between start and end from the skiplist.
 * Start and end are inclusive. Note that start and end need to be 1-based */
737
unsigned char *zzlDeleteRangeByRank(unsigned char *zl, unsigned int start, unsigned int end, unsigned long *deleted) {
738
    unsigned int num = (end-start)+1;
739 740 741
    if (deleted) *deleted = num;
    zl = ziplistDeleteRange(zl,2*(start-1),2*num);
    return zl;
742 743
}

744 745 746 747
/*-----------------------------------------------------------------------------
 * Common sorted set API
 *----------------------------------------------------------------------------*/

748
unsigned int zsetLength(robj *zobj) {
749 750
    int length = -1;
    if (zobj->encoding == REDIS_ENCODING_ZIPLIST) {
751
        length = zzlLength(zobj->ptr);
752
    } else if (zobj->encoding == REDIS_ENCODING_SKIPLIST) {
753 754 755 756 757 758 759
        length = ((zset*)zobj->ptr)->zsl->length;
    } else {
        redisPanic("Unknown sorted set encoding");
    }
    return length;
}

760
void zsetConvert(robj *zobj, int encoding) {
761 762 763 764 765 766 767 768 769 770 771 772 773
    zset *zs;
    zskiplistNode *node, *next;
    robj *ele;
    double score;

    if (zobj->encoding == encoding) return;
    if (zobj->encoding == REDIS_ENCODING_ZIPLIST) {
        unsigned char *zl = zobj->ptr;
        unsigned char *eptr, *sptr;
        unsigned char *vstr;
        unsigned int vlen;
        long long vlong;

774
        if (encoding != REDIS_ENCODING_SKIPLIST)
775 776 777 778 779 780 781
            redisPanic("Unknown target encoding");

        zs = zmalloc(sizeof(*zs));
        zs->dict = dictCreate(&zsetDictType,NULL);
        zs->zsl = zslCreate();

        eptr = ziplistIndex(zl,0);
782
        redisAssertWithInfo(NULL,zobj,eptr != NULL);
783
        sptr = ziplistNext(zl,eptr);
784
        redisAssertWithInfo(NULL,zobj,sptr != NULL);
785 786 787

        while (eptr != NULL) {
            score = zzlGetScore(sptr);
788
            redisAssertWithInfo(NULL,zobj,ziplistGet(eptr,&vstr,&vlen,&vlong));
789 790 791 792 793 794 795
            if (vstr == NULL)
                ele = createStringObjectFromLongLong(vlong);
            else
                ele = createStringObject((char*)vstr,vlen);

            /* Has incremented refcount since it was just created. */
            node = zslInsert(zs->zsl,score,ele);
796
            redisAssertWithInfo(NULL,zobj,dictAdd(zs->dict,ele,&node->score) == DICT_OK);
797 798 799 800 801 802
            incrRefCount(ele); /* Added to dictionary. */
            zzlNext(zl,&eptr,&sptr);
        }

        zfree(zobj->ptr);
        zobj->ptr = zs;
803 804
        zobj->encoding = REDIS_ENCODING_SKIPLIST;
    } else if (zobj->encoding == REDIS_ENCODING_SKIPLIST) {
805 806 807 808 809 810 811 812 813 814 815 816 817 818 819
        unsigned char *zl = ziplistNew();

        if (encoding != REDIS_ENCODING_ZIPLIST)
            redisPanic("Unknown target encoding");

        /* Approach similar to zslFree(), since we want to free the skiplist at
         * the same time as creating the ziplist. */
        zs = zobj->ptr;
        dictRelease(zs->dict);
        node = zs->zsl->header->level[0].forward;
        zfree(zs->zsl->header);
        zfree(zs->zsl);

        while (node) {
            ele = getDecodedObject(node->obj);
820
            zl = zzlInsertAt(zl,NULL,ele,node->score);
821 822 823 824 825 826 827 828
            decrRefCount(ele);

            next = node->level[0].forward;
            zslFreeNode(node);
            node = next;
        }

        zfree(zs);
829
        zobj->ptr = zl;
830 831 832 833 834 835
        zobj->encoding = REDIS_ENCODING_ZIPLIST;
    } else {
        redisPanic("Unknown sorted set encoding");
    }
}

836 837 838 839
/*-----------------------------------------------------------------------------
 * Sorted set commands 
 *----------------------------------------------------------------------------*/

840
/* This generic command implements both ZADD and ZINCRBY. */
841
void zaddGenericCommand(redisClient *c, int incr) {
842
    static char *nanerr = "resulting score is not a number (NaN)";
843 844
    robj *key = c->argv[1];
    robj *ele;
845 846
    robj *zobj;
    robj *curobj;
847
    double score = 0, *scores = NULL, curscore = 0.0;
A
antirez 已提交
848
    int j, elements = (c->argc-2)/2;
849
    int added = 0, updated = 0;
850

A
antirez 已提交
851 852
    if (c->argc % 2) {
        addReply(c,shared.syntaxerr);
853
        return;
A
antirez 已提交
854 855 856 857 858 859 860 861
    }

    /* Start parsing all the scores, we need to emit any syntax error
     * before executing additions to the sorted set, as the command should
     * either execute fully or nothing at all. */
    scores = zmalloc(sizeof(double)*elements);
    for (j = 0; j < elements; j++) {
        if (getDoubleFromObjectOrReply(c,c->argv[2+j*2],&scores[j],NULL)
862
            != REDIS_OK) goto cleanup;
A
antirez 已提交
863
    }
864

A
antirez 已提交
865
    /* Lookup the key and create the sorted set if does not exist. */
866 867
    zobj = lookupKeyWrite(c->db,key);
    if (zobj == NULL) {
868 869 870 871 872 873 874
        if (server.zset_max_ziplist_entries == 0 ||
            server.zset_max_ziplist_value < sdslen(c->argv[3]->ptr))
        {
            zobj = createZsetObject();
        } else {
            zobj = createZsetZiplistObject();
        }
875
        dbAdd(c->db,key,zobj);
876
    } else {
877
        if (zobj->type != REDIS_ZSET) {
878
            addReply(c,shared.wrongtypeerr);
879
            goto cleanup;
880 881 882
        }
    }

A
antirez 已提交
883 884 885 886 887 888 889 890 891 892 893 894 895
    for (j = 0; j < elements; j++) {
        score = scores[j];

        if (zobj->encoding == REDIS_ENCODING_ZIPLIST) {
            unsigned char *eptr;

            /* Prefer non-encoded element when dealing with ziplists. */
            ele = c->argv[3+j*2];
            if ((eptr = zzlFind(zobj->ptr,ele,&curscore)) != NULL) {
                if (incr) {
                    score += curscore;
                    if (isnan(score)) {
                        addReplyError(c,nanerr);
896
                        goto cleanup;
A
antirez 已提交
897
                    }
898 899
                }

A
antirez 已提交
900 901 902 903 904
                /* Remove and re-insert when score changed. */
                if (score != curscore) {
                    zobj->ptr = zzlDelete(zobj->ptr,eptr);
                    zobj->ptr = zzlInsert(zobj->ptr,ele,score);
                    server.dirty++;
905
                    updated++;
A
antirez 已提交
906 907 908 909
                }
            } else {
                /* Optimize: check if the element is too large or the list
                 * becomes too long *before* executing zzlInsert. */
910
                zobj->ptr = zzlInsert(zobj->ptr,ele,score);
A
antirez 已提交
911 912 913 914
                if (zzlLength(zobj->ptr) > server.zset_max_ziplist_entries)
                    zsetConvert(zobj,REDIS_ENCODING_SKIPLIST);
                if (sdslen(ele->ptr) > server.zset_max_ziplist_value)
                    zsetConvert(zobj,REDIS_ENCODING_SKIPLIST);
915
                server.dirty++;
916
                added++;
917
            }
A
antirez 已提交
918 919 920 921 922 923 924 925
        } else if (zobj->encoding == REDIS_ENCODING_SKIPLIST) {
            zset *zs = zobj->ptr;
            zskiplistNode *znode;
            dictEntry *de;

            ele = c->argv[3+j*2] = tryObjectEncoding(c->argv[3+j*2]);
            de = dictFind(zs->dict,ele);
            if (de != NULL) {
926 927
                curobj = dictGetKey(de);
                curscore = *(double*)dictGetVal(de);
A
antirez 已提交
928 929 930 931 932 933 934

                if (incr) {
                    score += curscore;
                    if (isnan(score)) {
                        addReplyError(c,nanerr);
                        /* Don't need to check if the sorted set is empty
                         * because we know it has at least one element. */
935
                        goto cleanup;
A
antirez 已提交
936
                    }
937 938
                }

A
antirez 已提交
939 940 941 942
                /* Remove and re-insert when score changed. We can safely
                 * delete the key object from the skiplist, since the
                 * dictionary still has a reference to it. */
                if (score != curscore) {
943
                    redisAssertWithInfo(c,curobj,zslDelete(zs->zsl,curscore,curobj));
A
antirez 已提交
944 945
                    znode = zslInsert(zs->zsl,score,curobj);
                    incrRefCount(curobj); /* Re-inserted in skiplist. */
946
                    dictGetVal(de) = &znode->score; /* Update score ptr. */
A
antirez 已提交
947
                    server.dirty++;
948
                    updated++;
A
antirez 已提交
949 950 951 952
                }
            } else {
                znode = zslInsert(zs->zsl,score,ele);
                incrRefCount(ele); /* Inserted in skiplist. */
A
antirez 已提交
953
                redisAssertWithInfo(c,NULL,dictAdd(zs->dict,ele,&znode->score) == DICT_OK);
A
antirez 已提交
954
                incrRefCount(ele); /* Added to dictionary. */
955
                server.dirty++;
956
                added++;
957 958
            }
        } else {
A
antirez 已提交
959
            redisPanic("Unknown sorted set encoding");
960 961
        }
    }
A
antirez 已提交
962 963 964 965
    if (incr) /* ZINCRBY */
        addReplyDouble(c,score);
    else /* ZADD */
        addReplyLongLong(c,added);
966 967 968 969 970

cleanup:
    zfree(scores);
    if (added || updated) {
        signalModifiedKey(c->db,key);
971 972
        notifyKeyspaceEvent(REDIS_NOTIFY_ZSET,
            incr ? "zincr" : "zadd", key, c->db->id);
973
    }
974 975 976
}

void zaddCommand(redisClient *c) {
977
    zaddGenericCommand(c,0);
978 979 980
}

void zincrbyCommand(redisClient *c) {
981
    zaddGenericCommand(c,1);
982 983 984
}

void zremCommand(redisClient *c) {
P
Pieter Noordhuis 已提交
985 986
    robj *key = c->argv[1];
    robj *zobj;
987
    int deleted = 0, keyremoved = 0, j;
P
Pieter Noordhuis 已提交
988 989 990 991 992 993 994

    if ((zobj = lookupKeyWriteOrReply(c,key,shared.czero)) == NULL ||
        checkType(c,zobj,REDIS_ZSET)) return;

    if (zobj->encoding == REDIS_ENCODING_ZIPLIST) {
        unsigned char *eptr;

A
antirez 已提交
995 996 997 998 999 1000 1001 1002 1003
        for (j = 2; j < c->argc; j++) {
            if ((eptr = zzlFind(zobj->ptr,c->argv[j],NULL)) != NULL) {
                deleted++;
                zobj->ptr = zzlDelete(zobj->ptr,eptr);
                if (zzlLength(zobj->ptr) == 0) {
                    dbDelete(c->db,key);
                    break;
                }
            }
P
Pieter Noordhuis 已提交
1004
        }
1005
    } else if (zobj->encoding == REDIS_ENCODING_SKIPLIST) {
P
Pieter Noordhuis 已提交
1006 1007 1008 1009
        zset *zs = zobj->ptr;
        dictEntry *de;
        double score;

A
antirez 已提交
1010 1011 1012 1013 1014 1015
        for (j = 2; j < c->argc; j++) {
            de = dictFind(zs->dict,c->argv[j]);
            if (de != NULL) {
                deleted++;

                /* Delete from the skiplist */
1016
                score = *(double*)dictGetVal(de);
1017
                redisAssertWithInfo(c,c->argv[j],zslDelete(zs->zsl,score,c->argv[j]));
A
antirez 已提交
1018 1019 1020 1021 1022 1023 1024 1025 1026

                /* Delete from the hash table */
                dictDelete(zs->dict,c->argv[j]);
                if (htNeedsResize(zs->dict)) dictResize(zs->dict);
                if (dictSize(zs->dict) == 0) {
                    dbDelete(c->db,key);
                    break;
                }
            }
P
Pieter Noordhuis 已提交
1027 1028 1029
        }
    } else {
        redisPanic("Unknown sorted set encoding");
1030 1031
    }

A
antirez 已提交
1032
    if (deleted) {
1033 1034 1035
        notifyKeyspaceEvent(REDIS_NOTIFY_ZSET,"zrem",key,c->db->id);
        if (keyremoved)
            notifyKeyspaceEvent(REDIS_NOTIFY_GENERIC,"del",key,c->db->id);
A
antirez 已提交
1036 1037 1038 1039
        signalModifiedKey(c->db,key);
        server.dirty += deleted;
    }
    addReplyLongLong(c,deleted);
1040 1041 1042
}

void zremrangebyscoreCommand(redisClient *c) {
1043 1044
    robj *key = c->argv[1];
    robj *zobj;
1045
    zrangespec range;
1046
    int keyremoved = 0;
1047
    unsigned long deleted;
1048

1049
    /* Parse the range arguments. */
1050
    if (zslParseRange(c->argv[2],c->argv[3],&range) != REDIS_OK) {
1051
        addReplyError(c,"min or max is not a float");
1052 1053
        return;
    }
1054

1055 1056 1057 1058
    if ((zobj = lookupKeyWriteOrReply(c,key,shared.czero)) == NULL ||
        checkType(c,zobj,REDIS_ZSET)) return;

    if (zobj->encoding == REDIS_ENCODING_ZIPLIST) {
1059
        zobj->ptr = zzlDeleteRangeByScore(zobj->ptr,range,&deleted);
1060 1061 1062 1063
        if (zzlLength(zobj->ptr) == 0) {
            dbDelete(c->db,key);
            keyremoved = 1;
        }
1064
    } else if (zobj->encoding == REDIS_ENCODING_SKIPLIST) {
1065 1066 1067
        zset *zs = zobj->ptr;
        deleted = zslDeleteRangeByScore(zs->zsl,range,zs->dict);
        if (htNeedsResize(zs->dict)) dictResize(zs->dict);
1068 1069 1070 1071
        if (dictSize(zs->dict) == 0) {
            dbDelete(c->db,key);
            keyremoved = 1;
        }
1072 1073 1074
    } else {
        redisPanic("Unknown sorted set encoding");
    }
1075

1076 1077
    if (deleted) {
        signalModifiedKey(c->db,key);
1078 1079 1080
        notifyKeyspaceEvent(REDIS_NOTIFY_ZSET,"zrembyscore",key,c->db->id);
        if (keyremoved)
            notifyKeyspaceEvent(REDIS_NOTIFY_GENERIC,"del",key,c->db->id);
1081
    }
1082 1083 1084 1085 1086
    server.dirty += deleted;
    addReplyLongLong(c,deleted);
}

void zremrangebyrankCommand(redisClient *c) {
1087 1088
    robj *key = c->argv[1];
    robj *zobj;
1089 1090 1091
    long start;
    long end;
    int llen;
1092
    unsigned long deleted;
1093
    int keyremoved = 0;
1094 1095 1096 1097

    if ((getLongFromObjectOrReply(c, c->argv[2], &start, NULL) != REDIS_OK) ||
        (getLongFromObjectOrReply(c, c->argv[3], &end, NULL) != REDIS_OK)) return;

1098 1099
    if ((zobj = lookupKeyWriteOrReply(c,key,shared.czero)) == NULL ||
        checkType(c,zobj,REDIS_ZSET)) return;
1100

1101
    /* Sanitize indexes. */
1102
    llen = zsetLength(zobj);
1103 1104 1105 1106
    if (start < 0) start = llen+start;
    if (end < 0) end = llen+end;
    if (start < 0) start = 0;

1107 1108
    /* Invariant: start >= 0, so this test will be true when end < 0.
     * The range is empty when start > end or start >= length. */
1109 1110 1111 1112 1113 1114
    if (start > end || start >= llen) {
        addReply(c,shared.czero);
        return;
    }
    if (end >= llen) end = llen-1;

1115 1116
    if (zobj->encoding == REDIS_ENCODING_ZIPLIST) {
        /* Correct for 1-based rank. */
1117
        zobj->ptr = zzlDeleteRangeByRank(zobj->ptr,start+1,end+1,&deleted);
1118 1119 1120 1121
        if (zzlLength(zobj->ptr) == 0) {
            dbDelete(c->db,key);
            keyremoved = 1;
        }
1122
    } else if (zobj->encoding == REDIS_ENCODING_SKIPLIST) {
1123 1124 1125 1126 1127
        zset *zs = zobj->ptr;

        /* Correct for 1-based rank. */
        deleted = zslDeleteRangeByRank(zs->zsl,start+1,end+1,zs->dict);
        if (htNeedsResize(zs->dict)) dictResize(zs->dict);
1128 1129 1130 1131
        if (dictSize(zs->dict) == 0) {
            dbDelete(c->db,key);
            keyremoved = 1;
        }
1132 1133 1134 1135
    } else {
        redisPanic("Unknown sorted set encoding");
    }

1136 1137
    if (deleted) {
        signalModifiedKey(c->db,key);
1138 1139 1140
        notifyKeyspaceEvent(REDIS_NOTIFY_ZSET,"zrembyrank",key,c->db->id);
        if (keyremoved)
            notifyKeyspaceEvent(REDIS_NOTIFY_GENERIC,"del",key,c->db->id);
1141
    }
1142
    server.dirty += deleted;
1143
    addReplyLongLong(c,deleted);
1144 1145 1146
}

typedef struct {
1147 1148 1149
    robj *subject;
    int type; /* Set, sorted set */
    int encoding;
1150
    double weight;
1151 1152 1153 1154 1155 1156 1157 1158 1159 1160 1161 1162 1163 1164 1165 1166 1167 1168 1169 1170 1171 1172 1173 1174 1175 1176 1177

    union {
        /* Set iterators. */
        union _iterset {
            struct {
                intset *is;
                int ii;
            } is;
            struct {
                dict *dict;
                dictIterator *di;
                dictEntry *de;
            } ht;
        } set;

        /* Sorted set iterators. */
        union _iterzset {
            struct {
                unsigned char *zl;
                unsigned char *eptr, *sptr;
            } zl;
            struct {
                zset *zs;
                zskiplistNode *node;
            } sl;
        } zset;
    } iter;
1178 1179
} zsetopsrc;

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/* Use dirty flags for pointers that need to be cleaned up in the next
 * iteration over the zsetopval. The dirty flag for the long long value is
 * special, since long long values don't need cleanup. Instead, it means that
 * we already checked that "ell" holds a long long, or tried to convert another
 * representation into a long long value. When this was successful,
 * OPVAL_VALID_LL is set as well. */
#define OPVAL_DIRTY_ROBJ 1
#define OPVAL_DIRTY_LL 2
#define OPVAL_VALID_LL 4

/* Store value retrieved from the iterator. */
typedef struct {
    int flags;
    unsigned char _buf[32]; /* Private buffer. */
    robj *ele;
    unsigned char *estr;
    unsigned int elen;
    long long ell;
    double score;
} zsetopval;

typedef union _iterset iterset;
typedef union _iterzset iterzset;

void zuiInitIterator(zsetopsrc *op) {
    if (op->subject == NULL)
        return;

    if (op->type == REDIS_SET) {
        iterset *it = &op->iter.set;
        if (op->encoding == REDIS_ENCODING_INTSET) {
            it->is.is = op->subject->ptr;
            it->is.ii = 0;
        } else if (op->encoding == REDIS_ENCODING_HT) {
            it->ht.dict = op->subject->ptr;
            it->ht.di = dictGetIterator(op->subject->ptr);
            it->ht.de = dictNext(it->ht.di);
        } else {
            redisPanic("Unknown set encoding");
        }
    } else if (op->type == REDIS_ZSET) {
        iterzset *it = &op->iter.zset;
        if (op->encoding == REDIS_ENCODING_ZIPLIST) {
            it->zl.zl = op->subject->ptr;
            it->zl.eptr = ziplistIndex(it->zl.zl,0);
            if (it->zl.eptr != NULL) {
                it->zl.sptr = ziplistNext(it->zl.zl,it->zl.eptr);
                redisAssert(it->zl.sptr != NULL);
            }
1230
        } else if (op->encoding == REDIS_ENCODING_SKIPLIST) {
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            it->sl.zs = op->subject->ptr;
            it->sl.node = it->sl.zs->zsl->header->level[0].forward;
        } else {
            redisPanic("Unknown sorted set encoding");
        }
    } else {
        redisPanic("Unsupported type");
    }
}

void zuiClearIterator(zsetopsrc *op) {
    if (op->subject == NULL)
        return;

    if (op->type == REDIS_SET) {
        iterset *it = &op->iter.set;
        if (op->encoding == REDIS_ENCODING_INTSET) {
            REDIS_NOTUSED(it); /* skip */
        } else if (op->encoding == REDIS_ENCODING_HT) {
            dictReleaseIterator(it->ht.di);
        } else {
            redisPanic("Unknown set encoding");
        }
    } else if (op->type == REDIS_ZSET) {
        iterzset *it = &op->iter.zset;
        if (op->encoding == REDIS_ENCODING_ZIPLIST) {
            REDIS_NOTUSED(it); /* skip */
1258
        } else if (op->encoding == REDIS_ENCODING_SKIPLIST) {
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            REDIS_NOTUSED(it); /* skip */
        } else {
            redisPanic("Unknown sorted set encoding");
        }
    } else {
        redisPanic("Unsupported type");
    }
}

int zuiLength(zsetopsrc *op) {
    if (op->subject == NULL)
        return 0;

    if (op->type == REDIS_SET) {
        iterset *it = &op->iter.set;
        if (op->encoding == REDIS_ENCODING_INTSET) {
            return intsetLen(it->is.is);
        } else if (op->encoding == REDIS_ENCODING_HT) {
            return dictSize(it->ht.dict);
        } else {
            redisPanic("Unknown set encoding");
        }
    } else if (op->type == REDIS_ZSET) {
        iterzset *it = &op->iter.zset;
        if (op->encoding == REDIS_ENCODING_ZIPLIST) {
            return zzlLength(it->zl.zl);
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        } else if (op->encoding == REDIS_ENCODING_SKIPLIST) {
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            return it->sl.zs->zsl->length;
        } else {
            redisPanic("Unknown sorted set encoding");
        }
    } else {
        redisPanic("Unsupported type");
    }
}

/* Check if the current value is valid. If so, store it in the passed structure
 * and move to the next element. If not valid, this means we have reached the
 * end of the structure and can abort. */
int zuiNext(zsetopsrc *op, zsetopval *val) {
    if (op->subject == NULL)
        return 0;

    if (val->flags & OPVAL_DIRTY_ROBJ)
        decrRefCount(val->ele);

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    memset(val,0,sizeof(zsetopval));
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    if (op->type == REDIS_SET) {
        iterset *it = &op->iter.set;
        if (op->encoding == REDIS_ENCODING_INTSET) {
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            int64_t ell;
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            if (!intsetGet(it->is.is,it->is.ii,&ell))
1313
                return 0;
1314
            val->ell = ell;
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            val->score = 1.0;

            /* Move to next element. */
            it->is.ii++;
        } else if (op->encoding == REDIS_ENCODING_HT) {
            if (it->ht.de == NULL)
                return 0;
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            val->ele = dictGetKey(it->ht.de);
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            val->score = 1.0;

            /* Move to next element. */
            it->ht.de = dictNext(it->ht.di);
        } else {
            redisPanic("Unknown set encoding");
        }
    } else if (op->type == REDIS_ZSET) {
        iterzset *it = &op->iter.zset;
        if (op->encoding == REDIS_ENCODING_ZIPLIST) {
            /* No need to check both, but better be explicit. */
            if (it->zl.eptr == NULL || it->zl.sptr == NULL)
                return 0;
            redisAssert(ziplistGet(it->zl.eptr,&val->estr,&val->elen,&val->ell));
            val->score = zzlGetScore(it->zl.sptr);

            /* Move to next element. */
            zzlNext(it->zl.zl,&it->zl.eptr,&it->zl.sptr);
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        } else if (op->encoding == REDIS_ENCODING_SKIPLIST) {
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            if (it->sl.node == NULL)
                return 0;
            val->ele = it->sl.node->obj;
            val->score = it->sl.node->score;

            /* Move to next element. */
            it->sl.node = it->sl.node->level[0].forward;
        } else {
            redisPanic("Unknown sorted set encoding");
        }
    } else {
        redisPanic("Unsupported type");
    }
    return 1;
}

int zuiLongLongFromValue(zsetopval *val) {
    if (!(val->flags & OPVAL_DIRTY_LL)) {
        val->flags |= OPVAL_DIRTY_LL;

        if (val->ele != NULL) {
            if (val->ele->encoding == REDIS_ENCODING_INT) {
                val->ell = (long)val->ele->ptr;
                val->flags |= OPVAL_VALID_LL;
            } else if (val->ele->encoding == REDIS_ENCODING_RAW) {
                if (string2ll(val->ele->ptr,sdslen(val->ele->ptr),&val->ell))
                    val->flags |= OPVAL_VALID_LL;
            } else {
                redisPanic("Unsupported element encoding");
            }
        } else if (val->estr != NULL) {
            if (string2ll((char*)val->estr,val->elen,&val->ell))
                val->flags |= OPVAL_VALID_LL;
        } else {
            /* The long long was already set, flag as valid. */
            val->flags |= OPVAL_VALID_LL;
        }
    }
    return val->flags & OPVAL_VALID_LL;
}

robj *zuiObjectFromValue(zsetopval *val) {
    if (val->ele == NULL) {
        if (val->estr != NULL) {
            val->ele = createStringObject((char*)val->estr,val->elen);
        } else {
            val->ele = createStringObjectFromLongLong(val->ell);
        }
        val->flags |= OPVAL_DIRTY_ROBJ;
    }
    return val->ele;
}

int zuiBufferFromValue(zsetopval *val) {
    if (val->estr == NULL) {
        if (val->ele != NULL) {
            if (val->ele->encoding == REDIS_ENCODING_INT) {
                val->elen = ll2string((char*)val->_buf,sizeof(val->_buf),(long)val->ele->ptr);
                val->estr = val->_buf;
            } else if (val->ele->encoding == REDIS_ENCODING_RAW) {
                val->elen = sdslen(val->ele->ptr);
                val->estr = val->ele->ptr;
            } else {
                redisPanic("Unsupported element encoding");
            }
        } else {
            val->elen = ll2string((char*)val->_buf,sizeof(val->_buf),val->ell);
            val->estr = val->_buf;
        }
    }
    return 1;
}

/* Find value pointed to by val in the source pointer to by op. When found,
 * return 1 and store its score in target. Return 0 otherwise. */
int zuiFind(zsetopsrc *op, zsetopval *val, double *score) {
    if (op->subject == NULL)
        return 0;

    if (op->type == REDIS_SET) {
        iterset *it = &op->iter.set;

        if (op->encoding == REDIS_ENCODING_INTSET) {
            if (zuiLongLongFromValue(val) && intsetFind(it->is.is,val->ell)) {
                *score = 1.0;
                return 1;
            } else {
                return 0;
            }
        } else if (op->encoding == REDIS_ENCODING_HT) {
            zuiObjectFromValue(val);
            if (dictFind(it->ht.dict,val->ele) != NULL) {
                *score = 1.0;
                return 1;
            } else {
                return 0;
            }
        } else {
            redisPanic("Unknown set encoding");
        }
    } else if (op->type == REDIS_ZSET) {
        iterzset *it = &op->iter.zset;
        zuiObjectFromValue(val);

        if (op->encoding == REDIS_ENCODING_ZIPLIST) {
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            if (zzlFind(it->zl.zl,val->ele,score) != NULL) {
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                /* Score is already set by zzlFind. */
                return 1;
            } else {
                return 0;
            }
1453
        } else if (op->encoding == REDIS_ENCODING_SKIPLIST) {
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            dictEntry *de;
            if ((de = dictFind(it->sl.zs->dict,val->ele)) != NULL) {
1456
                *score = *(double*)dictGetVal(de);
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                return 1;
            } else {
                return 0;
            }
        } else {
            redisPanic("Unknown sorted set encoding");
        }
    } else {
        redisPanic("Unsupported type");
    }
}

int zuiCompareByCardinality(const void *s1, const void *s2) {
    return zuiLength((zsetopsrc*)s1) - zuiLength((zsetopsrc*)s2);
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}

#define REDIS_AGGR_SUM 1
#define REDIS_AGGR_MIN 2
#define REDIS_AGGR_MAX 3
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#define zunionInterDictValue(_e) (dictGetVal(_e) == NULL ? 1.0 : *(double*)dictGetVal(_e))
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inline static void zunionInterAggregate(double *target, double val, int aggregate) {
    if (aggregate == REDIS_AGGR_SUM) {
        *target = *target + val;
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        /* The result of adding two doubles is NaN when one variable
         * is +inf and the other is -inf. When these numbers are added,
         * we maintain the convention of the result being 0.0. */
        if (isnan(*target)) *target = 0.0;
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    } else if (aggregate == REDIS_AGGR_MIN) {
        *target = val < *target ? val : *target;
    } else if (aggregate == REDIS_AGGR_MAX) {
        *target = val > *target ? val : *target;
    } else {
        /* safety net */
        redisPanic("Unknown ZUNION/INTER aggregate type");
    }
}

void zunionInterGenericCommand(redisClient *c, robj *dstkey, int op) {
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    int i, j;
    long setnum;
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    int aggregate = REDIS_AGGR_SUM;
    zsetopsrc *src;
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    zsetopval zval;
    robj *tmp;
1502
    unsigned int maxelelen = 0;
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    robj *dstobj;
    zset *dstzset;
1505
    zskiplistNode *znode;
1506
    int touched = 0;
1507 1508

    /* expect setnum input keys to be given */
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    if ((getLongFromObjectOrReply(c, c->argv[2], &setnum, NULL) != REDIS_OK))
        return;

1512
    if (setnum < 1) {
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        addReplyError(c,
            "at least 1 input key is needed for ZUNIONSTORE/ZINTERSTORE");
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        return;
    }

    /* test if the expected number of keys would overflow */
1519
    if (setnum > c->argc-3) {
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        addReply(c,shared.syntaxerr);
        return;
    }

    /* read keys to be used for input */
1525
    src = zcalloc(sizeof(zsetopsrc) * setnum);
1526 1527
    for (i = 0, j = 3; i < setnum; i++, j++) {
        robj *obj = lookupKeyWrite(c->db,c->argv[j]);
1528 1529
        if (obj != NULL) {
            if (obj->type != REDIS_ZSET && obj->type != REDIS_SET) {
1530 1531 1532 1533
                zfree(src);
                addReply(c,shared.wrongtypeerr);
                return;
            }
1534 1535 1536 1537 1538 1539

            src[i].subject = obj;
            src[i].type = obj->type;
            src[i].encoding = obj->encoding;
        } else {
            src[i].subject = NULL;
1540 1541
        }

1542
        /* Default all weights to 1. */
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        src[i].weight = 1.0;
    }

    /* parse optional extra arguments */
    if (j < c->argc) {
        int remaining = c->argc - j;

        while (remaining) {
            if (remaining >= (setnum + 1) && !strcasecmp(c->argv[j]->ptr,"weights")) {
                j++; remaining--;
                for (i = 0; i < setnum; i++, j++, remaining--) {
1554
                    if (getDoubleFromObjectOrReply(c,c->argv[j],&src[i].weight,
1555
                            "weight value is not a float") != REDIS_OK)
1556 1557
                    {
                        zfree(src);
1558
                        return;
1559
                    }
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                }
            } else if (remaining >= 2 && !strcasecmp(c->argv[j]->ptr,"aggregate")) {
                j++; remaining--;
                if (!strcasecmp(c->argv[j]->ptr,"sum")) {
                    aggregate = REDIS_AGGR_SUM;
                } else if (!strcasecmp(c->argv[j]->ptr,"min")) {
                    aggregate = REDIS_AGGR_MIN;
                } else if (!strcasecmp(c->argv[j]->ptr,"max")) {
                    aggregate = REDIS_AGGR_MAX;
                } else {
                    zfree(src);
                    addReply(c,shared.syntaxerr);
                    return;
                }
                j++; remaining--;
            } else {
                zfree(src);
                addReply(c,shared.syntaxerr);
                return;
            }
        }
    }

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    for (i = 0; i < setnum; i++)
        zuiInitIterator(&src[i]);

1586 1587
    /* sort sets from the smallest to largest, this will improve our
     * algorithm's performance */
1588
    qsort(src,setnum,sizeof(zsetopsrc),zuiCompareByCardinality);
1589 1590 1591

    dstobj = createZsetObject();
    dstzset = dstobj->ptr;
1592
    memset(&zval, 0, sizeof(zval));
1593 1594

    if (op == REDIS_OP_INTER) {
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        /* Skip everything if the smallest input is empty. */
        if (zuiLength(&src[0]) > 0) {
            /* Precondition: as src[0] is non-empty and the inputs are ordered
             * by size, all src[i > 0] are non-empty too. */
            while (zuiNext(&src[0],&zval)) {
1600
                double score, value;
1601

1602
                score = src[0].weight * zval.score;
1603 1604
                if (isnan(score)) score = 0;

1605
                for (j = 1; j < setnum; j++) {
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                    /* It is not safe to access the zset we are
1607
                     * iterating, so explicitly check for equal object. */
1608 1609 1610 1611
                    if (src[j].subject == src[0].subject) {
                        value = zval.score*src[j].weight;
                        zunionInterAggregate(&score,value,aggregate);
                    } else if (zuiFind(&src[j],&zval,&value)) {
1612
                        value *= src[j].weight;
1613
                        zunionInterAggregate(&score,value,aggregate);
1614 1615 1616 1617 1618
                    } else {
                        break;
                    }
                }

1619
                /* Only continue when present in every input. */
1620
                if (j == setnum) {
1621 1622 1623 1624 1625
                    tmp = zuiObjectFromValue(&zval);
                    znode = zslInsert(dstzset->zsl,score,tmp);
                    incrRefCount(tmp); /* added to skiplist */
                    dictAdd(dstzset->dict,tmp,&znode->score);
                    incrRefCount(tmp); /* added to dictionary */
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                    if (tmp->encoding == REDIS_ENCODING_RAW)
                        if (sdslen(tmp->ptr) > maxelelen)
                            maxelelen = sdslen(tmp->ptr);
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                }
            }
        }
    } else if (op == REDIS_OP_UNION) {
        for (i = 0; i < setnum; i++) {
1635
            if (zuiLength(&src[i]) == 0)
1636
                continue;
1637

1638
            while (zuiNext(&src[i],&zval)) {
1639 1640
                double score, value;

1641 1642
                /* Skip key when already processed */
                if (dictFind(dstzset->dict,zuiObjectFromValue(&zval)) != NULL)
1643
                    continue;
1644

1645 1646
                /* Initialize score */
                score = src[i].weight * zval.score;
1647
                if (isnan(score)) score = 0;
1648

1649 1650
                /* Because the inputs are sorted by size, it's only possible
                 * for sets at larger indices to hold this element. */
1651
                for (j = (i+1); j < setnum; j++) {
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                    /* It is not safe to access the zset we are
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                     * iterating, so explicitly check for equal object. */
                    if(src[j].subject == src[i].subject) {
                        value = zval.score*src[j].weight;
                        zunionInterAggregate(&score,value,aggregate);
                    } else if (zuiFind(&src[j],&zval,&value)) {
1658
                        value *= src[j].weight;
1659
                        zunionInterAggregate(&score,value,aggregate);
1660 1661 1662
                    }
                }

1663 1664 1665 1666 1667
                tmp = zuiObjectFromValue(&zval);
                znode = zslInsert(dstzset->zsl,score,tmp);
                incrRefCount(zval.ele); /* added to skiplist */
                dictAdd(dstzset->dict,tmp,&znode->score);
                incrRefCount(zval.ele); /* added to dictionary */
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                if (tmp->encoding == REDIS_ENCODING_RAW)
                    if (sdslen(tmp->ptr) > maxelelen)
                        maxelelen = sdslen(tmp->ptr);
1672 1673 1674
            }
        }
    } else {
1675
        redisPanic("Unknown operator");
1676 1677
    }

1678 1679 1680
    for (i = 0; i < setnum; i++)
        zuiClearIterator(&src[i]);

1681
    if (dbDelete(c->db,dstkey)) {
1682
        signalModifiedKey(c->db,dstkey);
1683
        notifyKeyspaceEvent(REDIS_NOTIFY_GENERIC,"del",dstkey,c->db->id);
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        touched = 1;
        server.dirty++;
    }
1687
    if (dstzset->zsl->length) {
1688 1689 1690
        /* Convert to ziplist when in limits. */
        if (dstzset->zsl->length <= server.zset_max_ziplist_entries &&
            maxelelen <= server.zset_max_ziplist_value)
1691
                zsetConvert(dstobj,REDIS_ENCODING_ZIPLIST);
1692

1693
        dbAdd(c->db,dstkey,dstobj);
1694
        addReplyLongLong(c,zsetLength(dstobj));
1695
        if (!touched) signalModifiedKey(c->db,dstkey);
1696
        notifyKeyspaceEvent(REDIS_NOTIFY_ZSET,
1697 1698
            (op == REDIS_OP_UNION) ? "zunionstore" : "zinterstore",
            dstkey,c->db->id);
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        server.dirty++;
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    } else {
        decrRefCount(dstobj);
1702
        addReply(c,shared.czero);
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    }
    zfree(src);
}

void zunionstoreCommand(redisClient *c) {
    zunionInterGenericCommand(c,c->argv[1], REDIS_OP_UNION);
}

void zinterstoreCommand(redisClient *c) {
    zunionInterGenericCommand(c,c->argv[1], REDIS_OP_INTER);
}

void zrangeGenericCommand(redisClient *c, int reverse) {
1716 1717 1718
    robj *key = c->argv[1];
    robj *zobj;
    int withscores = 0;
1719 1720 1721
    long start;
    long end;
    int llen;
1722
    int rangelen;
1723 1724 1725 1726 1727 1728 1729 1730 1731 1732 1733

    if ((getLongFromObjectOrReply(c, c->argv[2], &start, NULL) != REDIS_OK) ||
        (getLongFromObjectOrReply(c, c->argv[3], &end, NULL) != REDIS_OK)) return;

    if (c->argc == 5 && !strcasecmp(c->argv[4]->ptr,"withscores")) {
        withscores = 1;
    } else if (c->argc >= 5) {
        addReply(c,shared.syntaxerr);
        return;
    }

1734 1735
    if ((zobj = lookupKeyReadOrReply(c,key,shared.emptymultibulk)) == NULL
         || checkType(c,zobj,REDIS_ZSET)) return;
1736

1737
    /* Sanitize indexes. */
1738
    llen = zsetLength(zobj);
1739 1740 1741 1742
    if (start < 0) start = llen+start;
    if (end < 0) end = llen+end;
    if (start < 0) start = 0;

1743 1744
    /* Invariant: start >= 0, so this test will be true when end < 0.
     * The range is empty when start > end or start >= length. */
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    if (start > end || start >= llen) {
        addReply(c,shared.emptymultibulk);
        return;
    }
    if (end >= llen) end = llen-1;
    rangelen = (end-start)+1;

    /* Return the result in form of a multi-bulk reply */
1753 1754 1755 1756 1757 1758 1759 1760 1761 1762 1763 1764 1765 1766
    addReplyMultiBulkLen(c, withscores ? (rangelen*2) : rangelen);

    if (zobj->encoding == REDIS_ENCODING_ZIPLIST) {
        unsigned char *zl = zobj->ptr;
        unsigned char *eptr, *sptr;
        unsigned char *vstr;
        unsigned int vlen;
        long long vlong;

        if (reverse)
            eptr = ziplistIndex(zl,-2-(2*start));
        else
            eptr = ziplistIndex(zl,2*start);

1767
        redisAssertWithInfo(c,zobj,eptr != NULL);
1768 1769
        sptr = ziplistNext(zl,eptr);

1770
        while (rangelen--) {
1771 1772
            redisAssertWithInfo(c,zobj,eptr != NULL && sptr != NULL);
            redisAssertWithInfo(c,zobj,ziplistGet(eptr,&vstr,&vlen,&vlong));
1773 1774 1775 1776 1777
            if (vstr == NULL)
                addReplyBulkLongLong(c,vlong);
            else
                addReplyBulkCBuffer(c,vstr,vlen);

1778
            if (withscores)
1779 1780
                addReplyDouble(c,zzlGetScore(sptr));

1781 1782 1783 1784
            if (reverse)
                zzlPrev(zl,&eptr,&sptr);
            else
                zzlNext(zl,&eptr,&sptr);
1785 1786
        }

1787
    } else if (zobj->encoding == REDIS_ENCODING_SKIPLIST) {
1788 1789 1790 1791 1792 1793 1794 1795 1796 1797 1798 1799 1800 1801 1802 1803 1804
        zset *zs = zobj->ptr;
        zskiplist *zsl = zs->zsl;
        zskiplistNode *ln;
        robj *ele;

        /* Check if starting point is trivial, before doing log(N) lookup. */
        if (reverse) {
            ln = zsl->tail;
            if (start > 0)
                ln = zslGetElementByRank(zsl,llen-start);
        } else {
            ln = zsl->header->level[0].forward;
            if (start > 0)
                ln = zslGetElementByRank(zsl,start+1);
        }

        while(rangelen--) {
1805
            redisAssertWithInfo(c,zobj,ln != NULL);
1806 1807 1808 1809 1810 1811 1812 1813
            ele = ln->obj;
            addReplyBulk(c,ele);
            if (withscores)
                addReplyDouble(c,ln->score);
            ln = reverse ? ln->backward : ln->level[0].forward;
        }
    } else {
        redisPanic("Unknown sorted set encoding");
1814 1815 1816 1817 1818 1819 1820 1821 1822 1823 1824
    }
}

void zrangeCommand(redisClient *c) {
    zrangeGenericCommand(c,0);
}

void zrevrangeCommand(redisClient *c) {
    zrangeGenericCommand(c,1);
}

1825 1826
/* This command implements ZRANGEBYSCORE, ZREVRANGEBYSCORE. */
void genericZrangebyscoreCommand(redisClient *c, int reverse) {
1827
    zrangespec range;
1828
    robj *key = c->argv[1];
1829
    robj *zobj;
1830
    long offset = 0, limit = -1;
1831
    int withscores = 0;
1832 1833
    unsigned long rangelen = 0;
    void *replylen = NULL;
1834
    int minidx, maxidx;
1835

1836
    /* Parse the range arguments. */
1837 1838 1839 1840 1841 1842 1843 1844 1845
    if (reverse) {
        /* Range is given as [max,min] */
        maxidx = 2; minidx = 3;
    } else {
        /* Range is given as [min,max] */
        minidx = 2; maxidx = 3;
    }

    if (zslParseRange(c->argv[minidx],c->argv[maxidx],&range) != REDIS_OK) {
1846
        addReplyError(c,"min or max is not a float");
1847 1848
        return;
    }
1849 1850 1851 1852 1853 1854 1855 1856 1857 1858 1859 1860

    /* Parse optional extra arguments. Note that ZCOUNT will exactly have
     * 4 arguments, so we'll never enter the following code path. */
    if (c->argc > 4) {
        int remaining = c->argc - 4;
        int pos = 4;

        while (remaining) {
            if (remaining >= 1 && !strcasecmp(c->argv[pos]->ptr,"withscores")) {
                pos++; remaining--;
                withscores = 1;
            } else if (remaining >= 3 && !strcasecmp(c->argv[pos]->ptr,"limit")) {
1861 1862
                if ((getLongFromObjectOrReply(c, c->argv[pos+1], &offset, NULL) != REDIS_OK) ||
                    (getLongFromObjectOrReply(c, c->argv[pos+2], &limit, NULL) != REDIS_OK)) return;
1863 1864 1865 1866 1867 1868
                pos += 3; remaining -= 3;
            } else {
                addReply(c,shared.syntaxerr);
                return;
            }
        }
1869
    }
1870 1871

    /* Ok, lookup the key and get the range */
1872
    if ((zobj = lookupKeyReadOrReply(c,key,shared.emptymultibulk)) == NULL ||
1873
        checkType(c,zobj,REDIS_ZSET)) return;
1874

1875 1876 1877 1878 1879 1880 1881
    if (zobj->encoding == REDIS_ENCODING_ZIPLIST) {
        unsigned char *zl = zobj->ptr;
        unsigned char *eptr, *sptr;
        unsigned char *vstr;
        unsigned int vlen;
        long long vlong;
        double score;
1882

1883
        /* If reversed, get the last node in range as starting point. */
1884
        if (reverse) {
1885
            eptr = zzlLastInRange(zl,range);
1886
        } else {
1887
            eptr = zzlFirstInRange(zl,range);
1888
        }
1889

1890 1891
        /* No "first" element in the specified interval. */
        if (eptr == NULL) {
1892
            addReply(c, shared.emptymultibulk);
1893 1894
            return;
        }
1895

1896
        /* Get score pointer for the first element. */
1897
        redisAssertWithInfo(c,zobj,eptr != NULL);
1898
        sptr = ziplistNext(zl,eptr);
1899

1900 1901 1902
        /* We don't know in advance how many matching elements there are in the
         * list, so we push this object that will represent the multi-bulk
         * length in the output buffer, and will "fix" it later */
1903
        replylen = addDeferredMultiBulkLength(c);
1904 1905 1906

        /* If there is an offset, just traverse the number of elements without
         * checking the score because that is done in the next loop. */
1907 1908
        while (eptr && offset--) {
            if (reverse) {
1909
                zzlPrev(zl,&eptr,&sptr);
1910
            } else {
1911
                zzlNext(zl,&eptr,&sptr);
1912 1913
            }
        }
1914 1915 1916 1917 1918 1919 1920 1921 1922 1923 1924

        while (eptr && limit--) {
            score = zzlGetScore(sptr);

            /* Abort when the node is no longer in range. */
            if (reverse) {
                if (!zslValueGteMin(score,&range)) break;
            } else {
                if (!zslValueLteMax(score,&range)) break;
            }

1925
            /* We know the element exists, so ziplistGet should always succeed */
1926
            redisAssertWithInfo(c,zobj,ziplistGet(eptr,&vstr,&vlen,&vlong));
1927

1928
            rangelen++;
1929 1930 1931 1932 1933 1934 1935 1936
            if (vstr == NULL) {
                addReplyBulkLongLong(c,vlong);
            } else {
                addReplyBulkCBuffer(c,vstr,vlen);
            }

            if (withscores) {
                addReplyDouble(c,score);
1937 1938 1939
            }

            /* Move to next node */
1940
            if (reverse) {
1941
                zzlPrev(zl,&eptr,&sptr);
1942
            } else {
1943
                zzlNext(zl,&eptr,&sptr);
1944
            }
1945
        }
1946
    } else if (zobj->encoding == REDIS_ENCODING_SKIPLIST) {
1947 1948 1949
        zset *zs = zobj->ptr;
        zskiplist *zsl = zs->zsl;
        zskiplistNode *ln;
1950

1951
        /* If reversed, get the last node in range as starting point. */
1952
        if (reverse) {
1953
            ln = zslLastInRange(zsl,range);
1954
        } else {
1955
            ln = zslFirstInRange(zsl,range);
1956
        }
1957 1958 1959

        /* No "first" element in the specified interval. */
        if (ln == NULL) {
1960
            addReply(c, shared.emptymultibulk);
1961
            return;
1962 1963
        }

1964 1965 1966
        /* We don't know in advance how many matching elements there are in the
         * list, so we push this object that will represent the multi-bulk
         * length in the output buffer, and will "fix" it later */
1967
        replylen = addDeferredMultiBulkLength(c);
1968 1969 1970

        /* If there is an offset, just traverse the number of elements without
         * checking the score because that is done in the next loop. */
1971 1972 1973 1974 1975 1976 1977
        while (ln && offset--) {
            if (reverse) {
                ln = ln->backward;
            } else {
                ln = ln->level[0].forward;
            }
        }
1978 1979 1980 1981 1982 1983 1984 1985 1986 1987

        while (ln && limit--) {
            /* Abort when the node is no longer in range. */
            if (reverse) {
                if (!zslValueGteMin(ln->score,&range)) break;
            } else {
                if (!zslValueLteMax(ln->score,&range)) break;
            }

            rangelen++;
1988 1989 1990 1991
            addReplyBulk(c,ln->obj);

            if (withscores) {
                addReplyDouble(c,ln->score);
1992 1993 1994
            }

            /* Move to next node */
1995 1996 1997 1998 1999
            if (reverse) {
                ln = ln->backward;
            } else {
                ln = ln->level[0].forward;
            }
2000 2001 2002
        }
    } else {
        redisPanic("Unknown sorted set encoding");
2003 2004
    }

2005 2006
    if (withscores) {
        rangelen *= 2;
2007
    }
2008 2009

    setDeferredMultiBulkLength(c, replylen, rangelen);
2010 2011 2012
}

void zrangebyscoreCommand(redisClient *c) {
2013
    genericZrangebyscoreCommand(c,0);
2014 2015 2016
}

void zrevrangebyscoreCommand(redisClient *c) {
2017
    genericZrangebyscoreCommand(c,1);
2018 2019 2020
}

void zcountCommand(redisClient *c) {
2021 2022 2023 2024 2025 2026 2027
    robj *key = c->argv[1];
    robj *zobj;
    zrangespec range;
    int count = 0;

    /* Parse the range arguments */
    if (zslParseRange(c->argv[2],c->argv[3],&range) != REDIS_OK) {
2028
        addReplyError(c,"min or max is not a float");
2029 2030 2031 2032 2033 2034 2035 2036 2037 2038 2039 2040 2041 2042 2043 2044 2045 2046 2047 2048 2049 2050 2051 2052
        return;
    }

    /* Lookup the sorted set */
    if ((zobj = lookupKeyReadOrReply(c, key, shared.czero)) == NULL ||
        checkType(c, zobj, REDIS_ZSET)) return;

    if (zobj->encoding == REDIS_ENCODING_ZIPLIST) {
        unsigned char *zl = zobj->ptr;
        unsigned char *eptr, *sptr;
        double score;

        /* Use the first element in range as the starting point */
        eptr = zzlFirstInRange(zl,range);

        /* No "first" element */
        if (eptr == NULL) {
            addReply(c, shared.czero);
            return;
        }

        /* First element is in range */
        sptr = ziplistNext(zl,eptr);
        score = zzlGetScore(sptr);
2053
        redisAssertWithInfo(c,zobj,zslValueLteMax(score,&range));
2054 2055 2056 2057 2058 2059 2060 2061 2062 2063 2064 2065 2066 2067 2068 2069 2070 2071 2072 2073 2074 2075 2076 2077 2078 2079 2080 2081 2082 2083 2084 2085 2086 2087 2088 2089 2090 2091 2092 2093 2094

        /* Iterate over elements in range */
        while (eptr) {
            score = zzlGetScore(sptr);

            /* Abort when the node is no longer in range. */
            if (!zslValueLteMax(score,&range)) {
                break;
            } else {
                count++;
                zzlNext(zl,&eptr,&sptr);
            }
        }
    } else if (zobj->encoding == REDIS_ENCODING_SKIPLIST) {
        zset *zs = zobj->ptr;
        zskiplist *zsl = zs->zsl;
        zskiplistNode *zn;
        unsigned long rank;

        /* Find first element in range */
        zn = zslFirstInRange(zsl, range);

        /* Use rank of first element, if any, to determine preliminary count */
        if (zn != NULL) {
            rank = zslGetRank(zsl, zn->score, zn->obj);
            count = (zsl->length - (rank - 1));

            /* Find last element in range */
            zn = zslLastInRange(zsl, range);

            /* Use rank of last element, if any, to determine the actual count */
            if (zn != NULL) {
                rank = zslGetRank(zsl, zn->score, zn->obj);
                count -= (zsl->length - rank);
            }
        }
    } else {
        redisPanic("Unknown sorted set encoding");
    }

    addReplyLongLong(c, count);
2095 2096 2097
}

void zcardCommand(redisClient *c) {
2098 2099
    robj *key = c->argv[1];
    robj *zobj;
2100

2101 2102
    if ((zobj = lookupKeyReadOrReply(c,key,shared.czero)) == NULL ||
        checkType(c,zobj,REDIS_ZSET)) return;
2103

2104
    addReplyLongLong(c,zsetLength(zobj));
2105 2106 2107
}

void zscoreCommand(redisClient *c) {
2108 2109 2110
    robj *key = c->argv[1];
    robj *zobj;
    double score;
2111

2112 2113
    if ((zobj = lookupKeyReadOrReply(c,key,shared.nullbulk)) == NULL ||
        checkType(c,zobj,REDIS_ZSET)) return;
2114

2115
    if (zobj->encoding == REDIS_ENCODING_ZIPLIST) {
2116
        if (zzlFind(zobj->ptr,c->argv[2],&score) != NULL)
2117 2118 2119
            addReplyDouble(c,score);
        else
            addReply(c,shared.nullbulk);
2120
    } else if (zobj->encoding == REDIS_ENCODING_SKIPLIST) {
2121 2122
        zset *zs = zobj->ptr;
        dictEntry *de;
2123

2124 2125 2126
        c->argv[2] = tryObjectEncoding(c->argv[2]);
        de = dictFind(zs->dict,c->argv[2]);
        if (de != NULL) {
2127
            score = *(double*)dictGetVal(de);
2128 2129 2130 2131 2132 2133
            addReplyDouble(c,score);
        } else {
            addReply(c,shared.nullbulk);
        }
    } else {
        redisPanic("Unknown sorted set encoding");
2134 2135 2136 2137
    }
}

void zrankGenericCommand(redisClient *c, int reverse) {
2138 2139 2140 2141
    robj *key = c->argv[1];
    robj *ele = c->argv[2];
    robj *zobj;
    unsigned long llen;
2142 2143
    unsigned long rank;

2144 2145
    if ((zobj = lookupKeyReadOrReply(c,key,shared.nullbulk)) == NULL ||
        checkType(c,zobj,REDIS_ZSET)) return;
2146
    llen = zsetLength(zobj);
2147

2148
    redisAssertWithInfo(c,ele,ele->encoding == REDIS_ENCODING_RAW);
2149 2150 2151
    if (zobj->encoding == REDIS_ENCODING_ZIPLIST) {
        unsigned char *zl = zobj->ptr;
        unsigned char *eptr, *sptr;
2152

2153
        eptr = ziplistIndex(zl,0);
2154
        redisAssertWithInfo(c,zobj,eptr != NULL);
2155
        sptr = ziplistNext(zl,eptr);
2156
        redisAssertWithInfo(c,zobj,sptr != NULL);
2157 2158 2159 2160 2161 2162 2163 2164 2165 2166 2167 2168 2169 2170

        rank = 1;
        while(eptr != NULL) {
            if (ziplistCompare(eptr,ele->ptr,sdslen(ele->ptr)))
                break;
            rank++;
            zzlNext(zl,&eptr,&sptr);
        }

        if (eptr != NULL) {
            if (reverse)
                addReplyLongLong(c,llen-rank);
            else
                addReplyLongLong(c,rank-1);
2171
        } else {
2172 2173
            addReply(c,shared.nullbulk);
        }
2174
    } else if (zobj->encoding == REDIS_ENCODING_SKIPLIST) {
2175 2176 2177 2178 2179 2180 2181 2182
        zset *zs = zobj->ptr;
        zskiplist *zsl = zs->zsl;
        dictEntry *de;
        double score;

        ele = c->argv[2] = tryObjectEncoding(c->argv[2]);
        de = dictFind(zs->dict,ele);
        if (de != NULL) {
2183
            score = *(double*)dictGetVal(de);
2184
            rank = zslGetRank(zsl,score,ele);
2185
            redisAssertWithInfo(c,ele,rank); /* Existing elements always have a rank. */
2186 2187 2188 2189 2190 2191
            if (reverse)
                addReplyLongLong(c,llen-rank);
            else
                addReplyLongLong(c,rank-1);
        } else {
            addReply(c,shared.nullbulk);
2192 2193
        }
    } else {
2194
        redisPanic("Unknown sorted set encoding");
2195 2196 2197 2198 2199 2200 2201 2202 2203 2204
    }
}

void zrankCommand(redisClient *c) {
    zrankGenericCommand(c, 0);
}

void zrevrankCommand(redisClient *c) {
    zrankGenericCommand(c, 1);
}