t_zset.c 53.6 KB
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#include "redis.h"

#include <math.h>

/*-----------------------------------------------------------------------------
 * 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:
 * a) this implementation allows for repeated values.
 * 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. */

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);
}

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;

    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
     * happpen since the caller of zslInsert() should test in the hash table
     * 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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/* Struct to hold a inclusive/exclusive range spec. */
typedef struct {
    double min, max;
    int minex, maxex; /* are min or max exclusive? */
} zrangespec;

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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);
}

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static int zslValueInRange(double value, zrangespec *spec) {
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    return zslValueGteMin(value,spec) && zslValueLteMax(value,spec);
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}

/* 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;
    }

    /* The tail is in range, so the previous block should always return a
     * node that is non-NULL and the last one to be out of range. */
    x = x->level[0].forward;
    redisAssert(x != NULL && zslValueInRange(x->score,&range));
    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;
    }

    /* The header is in range, so the previous block should always return a
     * node that is non-NULL and in range. */
    redisAssert(x != NULL && zslValueInRange(x->score,&range));
    return x;
}

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/* Delete all the elements with score between min and max from the skiplist.
 * Min and mx are inclusive, so a score >= min || score <= max is deleted.
 * 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(robj *zobj) {
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    unsigned char *zl = zobj->ptr;
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    redisAssert(zobj->encoding == REDIS_ENCODING_ZIPLIST);
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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. */
    redisAssert(p != NULL);
    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. */
unsigned char *zzlFirstInRange(robj *zobj, zrangespec range) {
    unsigned char *zl = zobj->ptr;
    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);
        if (zslValueGteMin(score,&range))
            return eptr;

        /* 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. */
unsigned char *zzlLastInRange(robj *zobj, zrangespec range) {
    unsigned char *zl = zobj->ptr;
    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);
        if (zslValueLteMax(score,&range))
            return eptr;

        /* 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(robj *zobj, robj *ele, double *score) {
    unsigned char *zl = zobj->ptr;
    unsigned char *eptr = ziplistIndex(zl,0), *sptr;

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

        if (ziplistCompare(eptr,ele->ptr,sdslen(ele->ptr))) {
            /* Matching element, pull out score. */
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            if (score != NULL) *score = zzlGetScore(sptr);
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            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. */
int zzlDelete(robj *zobj, unsigned char *eptr) {
    unsigned char *zl = zobj->ptr;
    unsigned char *p = eptr;

    /* TODO: add function to ziplist API to delete N elements from offset. */
    zl = ziplistDelete(zl,&p);
    zl = ziplistDelete(zl,&p);
    zobj->ptr = zl;
    return REDIS_OK;
}

int zzlInsertAt(robj *zobj, robj *ele, double score, unsigned char *eptr) {
    unsigned char *zl = zobj->ptr;
    unsigned char *sptr;
    char scorebuf[128];
    int scorelen;
    int offset;

    redisAssert(ele->encoding == REDIS_ENCODING_RAW);
    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. */
        redisAssert((sptr = ziplistNext(zl,eptr)) != NULL);
        zl = ziplistInsert(zl,sptr,(unsigned char*)scorebuf,scorelen);
    }

    zobj->ptr = zl;
    return REDIS_OK;
}

/* Insert (element,score) pair in ziplist. This function assumes the element is
 * not yet present in the list. */
int zzlInsert(robj *zobj, robj *ele, double score) {
    unsigned char *zl = zobj->ptr;
    unsigned char *eptr = ziplistIndex(zl,0), *sptr;
    double s;

    ele = getDecodedObject(ele);
    while (eptr != NULL) {
        sptr = ziplistNext(zl,eptr);
        redisAssert(sptr != NULL);
        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. */
            zzlInsertAt(zobj,ele,score,eptr);
            break;
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        } else if (s == score) {
            /* Ensure lexicographical ordering for elements. */
662
            if (zzlCompareElements(eptr,ele->ptr,sdslen(ele->ptr)) > 0) {
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                zzlInsertAt(zobj,ele,score,eptr);
                break;
            }
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        }

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

    /* Push on tail of list when it was not yet inserted. */
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    if (eptr == NULL)
        zzlInsertAt(zobj,ele,score,NULL);
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    decrRefCount(ele);
    return REDIS_OK;
}
679

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unsigned long zzlDeleteRangeByScore(robj *zobj, zrangespec range) {
    unsigned char *zl = zobj->ptr;
    unsigned char *eptr, *sptr;
    double score;
    unsigned long deleted = 0;

    eptr = zzlFirstInRange(zobj,range);
    if (eptr == NULL) return deleted;


    /* 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);
            deleted++;
        } else {
            /* No longer in range. */
            break;
        }
    }

    return deleted;
}

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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 zzlDeleteRangeByRank(robj *zobj, unsigned int start, unsigned int end) {
    unsigned int num = (end-start)+1;
    zobj->ptr = ziplistDeleteRange(zobj->ptr,2*(start-1),2*num);
    return num;
}

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/*-----------------------------------------------------------------------------
 * Common sorted set API
 *----------------------------------------------------------------------------*/

int zsLength(robj *zobj) {
    int length = -1;
    if (zobj->encoding == REDIS_ENCODING_ZIPLIST) {
        length = zzlLength(zobj);
    } else if (zobj->encoding == REDIS_ENCODING_RAW) {
        length = ((zset*)zobj->ptr)->zsl->length;
    } else {
        redisPanic("Unknown sorted set encoding");
    }
    return length;
}

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void zsConvert(robj *zobj, int encoding) {
    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;

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

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

        eptr = ziplistIndex(zl,0);
        redisAssert(eptr != NULL);
        sptr = ziplistNext(zl,eptr);
        redisAssert(sptr != NULL);

        while (eptr != NULL) {
            score = zzlGetScore(sptr);
            redisAssert(ziplistGet(eptr,&vstr,&vlen,&vlong));
            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);
            redisAssert(dictAdd(zs->dict,ele,&node->score) == DICT_OK);
            incrRefCount(ele); /* Added to dictionary. */
            zzlNext(zl,&eptr,&sptr);
        }

        zfree(zobj->ptr);
        zobj->ptr = zs;
        zobj->encoding = REDIS_ENCODING_RAW;
    } else if (zobj->encoding == REDIS_ENCODING_RAW) {
        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);

        /* Immediately store pointer to ziplist in object because it will
         * change because of reallocations when pushing to the ziplist. */
        zobj->ptr = zl;

        while (node) {
            ele = getDecodedObject(node->obj);
            redisAssert(zzlInsertAt(zobj,ele,node->score,NULL) == REDIS_OK);
            decrRefCount(ele);

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

        zfree(zs);
        zobj->encoding = REDIS_ENCODING_ZIPLIST;
    } else {
        redisPanic("Unknown sorted set encoding");
    }
}

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/*-----------------------------------------------------------------------------
 * Sorted set commands 
 *----------------------------------------------------------------------------*/

815
/* This generic command implements both ZADD and ZINCRBY. */
816
void zaddGenericCommand(redisClient *c, int incr) {
817
    static char *nanerr = "resulting score is not a number (NaN)";
818 819
    robj *key = c->argv[1];
    robj *ele;
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    robj *zobj;
    robj *curobj;
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    double score, curscore = 0.0;

    if (getDoubleFromObjectOrReply(c,c->argv[2],&score,NULL) != REDIS_OK)
        return;
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    zobj = lookupKeyWrite(c->db,key);
    if (zobj == NULL) {
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        if (server.zset_max_ziplist_entries == 0 ||
            server.zset_max_ziplist_value < sdslen(c->argv[3]->ptr))
        {
            zobj = createZsetObject();
        } else {
            zobj = createZsetZiplistObject();
        }
836
        dbAdd(c->db,key,zobj);
837
    } else {
838
        if (zobj->type != REDIS_ZSET) {
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            addReply(c,shared.wrongtypeerr);
            return;
        }
    }

844 845 846
    if (zobj->encoding == REDIS_ENCODING_ZIPLIST) {
        unsigned char *eptr;

847 848
        /* Prefer non-encoded element when dealing with ziplists. */
        ele = c->argv[3];
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        if ((eptr = zzlFind(zobj,ele,&curscore)) != NULL) {
            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. */
                    return;
                }
            }

            /* Remove and re-insert when score changed. */
            if (score != curscore) {
                redisAssert(zzlDelete(zobj,eptr) == REDIS_OK);
                redisAssert(zzlInsert(zobj,ele,score) == REDIS_OK);

                signalModifiedKey(c->db,key);
                server.dirty++;
            }

            if (incr) /* ZINCRBY */
                addReplyDouble(c,score);
            else /* ZADD */
                addReply(c,shared.czero);
        } else {
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            /* Optimize: check if the element is too large or the list becomes
             * too long *before* executing zzlInsert. */
876
            redisAssert(zzlInsert(zobj,ele,score) == REDIS_OK);
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            if (zzlLength(zobj) > server.zset_max_ziplist_entries)
                zsConvert(zobj,REDIS_ENCODING_RAW);
            if (sdslen(ele->ptr) > server.zset_max_ziplist_value)
                zsConvert(zobj,REDIS_ENCODING_RAW);
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882 883
            signalModifiedKey(c->db,key);
            server.dirty++;
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            if (incr) /* ZINCRBY */
                addReplyDouble(c,score);
            else /* ZADD */
                addReply(c,shared.cone);
        }
    } else if (zobj->encoding == REDIS_ENCODING_RAW) {
        zset *zs = zobj->ptr;
        zskiplistNode *znode;
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        dictEntry *de;

895
        ele = c->argv[3] = tryObjectEncoding(c->argv[3]);
896
        de = dictFind(zs->dict,ele);
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        if (de != NULL) {
            curobj = dictGetEntryKey(de);
            curscore = *(double*)dictGetEntryVal(de);

            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. */
                    return;
                }
            }

            /* 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) {
                redisAssert(zslDelete(zs->zsl,curscore,curobj));
                znode = zslInsert(zs->zsl,score,curobj);
                incrRefCount(curobj); /* Re-inserted in skiplist. */
                dictGetEntryVal(de) = &znode->score; /* Update score ptr. */

                signalModifiedKey(c->db,key);
                server.dirty++;
            }

            if (incr) /* ZINCRBY */
                addReplyDouble(c,score);
            else /* ZADD */
                addReply(c,shared.czero);
        } else {
            znode = zslInsert(zs->zsl,score,ele);
            incrRefCount(ele); /* Inserted in skiplist. */
            redisAssert(dictAdd(zs->dict,ele,&znode->score) == DICT_OK);
            incrRefCount(ele); /* Added to dictionary. */

            signalModifiedKey(c->db,key);
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            server.dirty++;
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            if (incr) /* ZINCRBY */
                addReplyDouble(c,score);
            else /* ZADD */
                addReply(c,shared.cone);
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        }
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    } else {
        redisPanic("Unknown sorted set encoding");
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    }
}

void zaddCommand(redisClient *c) {
948
    zaddGenericCommand(c,0);
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}

void zincrbyCommand(redisClient *c) {
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    zaddGenericCommand(c,1);
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}

void zremCommand(redisClient *c) {
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    robj *key = c->argv[1];
    robj *ele = c->argv[2];
    robj *zobj;

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

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

        if ((eptr = zzlFind(zobj,ele,NULL)) != NULL) {
            redisAssert(zzlDelete(zobj,eptr) == REDIS_OK);
            if (zzlLength(zobj) == 0) dbDelete(c->db,key);
        } else {
            addReply(c,shared.czero);
            return;
        }
    } else if (zobj->encoding == REDIS_ENCODING_RAW) {
        zset *zs = zobj->ptr;
        dictEntry *de;
        double score;

        de = dictFind(zs->dict,ele);
        if (de != NULL) {
            /* Delete from the skiplist */
            score = *(double*)dictGetEntryVal(de);
            redisAssert(zslDelete(zs->zsl,score,ele));

            /* Delete from the hash table */
            dictDelete(zs->dict,ele);
            if (htNeedsResize(zs->dict)) dictResize(zs->dict);
            if (dictSize(zs->dict) == 0) dbDelete(c->db,key);
        } else {
            addReply(c,shared.czero);
            return;
        }
    } else {
        redisPanic("Unknown sorted set encoding");
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    }

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    signalModifiedKey(c->db,key);
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    server.dirty++;
    addReply(c,shared.cone);
}

void zremrangebyscoreCommand(redisClient *c) {
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    robj *key = c->argv[1];
    robj *zobj;
1004
    zrangespec range;
1005
    unsigned long deleted;
1006

1007
    /* Parse the range arguments. */
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    if (zslParseRange(c->argv[2],c->argv[3],&range) != REDIS_OK) {
        addReplyError(c,"min or max is not a double");
        return;
    }
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    if ((zobj = lookupKeyWriteOrReply(c,key,shared.czero)) == NULL ||
        checkType(c,zobj,REDIS_ZSET)) return;

    if (zobj->encoding == REDIS_ENCODING_ZIPLIST) {
        deleted = zzlDeleteRangeByScore(zobj,range);
    } else if (zobj->encoding == REDIS_ENCODING_RAW) {
        zset *zs = zobj->ptr;
        deleted = zslDeleteRangeByScore(zs->zsl,range,zs->dict);
        if (htNeedsResize(zs->dict)) dictResize(zs->dict);
        if (dictSize(zs->dict) == 0) dbDelete(c->db,key);
    } else {
        redisPanic("Unknown sorted set encoding");
    }
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1027
    if (deleted) signalModifiedKey(c->db,key);
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    server.dirty += deleted;
    addReplyLongLong(c,deleted);
}

void zremrangebyrankCommand(redisClient *c) {
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    robj *key = c->argv[1];
    robj *zobj;
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    long start;
    long end;
    int llen;
1038
    unsigned long deleted;
1039 1040 1041 1042

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

1043 1044
    if ((zobj = lookupKeyWriteOrReply(c,key,shared.czero)) == NULL ||
        checkType(c,zobj,REDIS_ZSET)) return;
1045

1046 1047
    /* Sanitize indexes. */
    llen = zsLength(zobj);
1048 1049 1050 1051
    if (start < 0) start = llen+start;
    if (end < 0) end = llen+end;
    if (start < 0) start = 0;

1052 1053
    /* 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.czero);
        return;
    }
    if (end >= llen) end = llen-1;

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    if (zobj->encoding == REDIS_ENCODING_ZIPLIST) {
        /* Correct for 1-based rank. */
        deleted = zzlDeleteRangeByRank(zobj,start+1,end+1);
    } else if (zobj->encoding == REDIS_ENCODING_RAW) {
        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);
        if (dictSize(zs->dict) == 0) dbDelete(c->db,key);
    } else {
        redisPanic("Unknown sorted set encoding");
    }

    if (deleted) signalModifiedKey(c->db,key);
1075
    server.dirty += deleted;
1076
    addReplyLongLong(c,deleted);
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}

typedef struct {
    dict *dict;
    double weight;
} zsetopsrc;

int qsortCompareZsetopsrcByCardinality(const void *s1, const void *s2) {
    zsetopsrc *d1 = (void*) s1, *d2 = (void*) s2;
    unsigned long size1, size2;
    size1 = d1->dict ? dictSize(d1->dict) : 0;
    size2 = d2->dict ? dictSize(d2->dict) : 0;
    return size1 - size2;
}

#define REDIS_AGGR_SUM 1
#define REDIS_AGGR_MIN 2
#define REDIS_AGGR_MAX 3
#define zunionInterDictValue(_e) (dictGetEntryVal(_e) == NULL ? 1.0 : *(double*)dictGetEntryVal(_e))

inline static void zunionInterAggregate(double *target, double val, int aggregate) {
    if (aggregate == REDIS_AGGR_SUM) {
        *target = *target + val;
1100 1101 1102 1103
        /* 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) {
    int i, j, setnum;
    int aggregate = REDIS_AGGR_SUM;
    zsetopsrc *src;
    robj *dstobj;
    zset *dstzset;
1120
    zskiplistNode *znode;
1121 1122
    dictIterator *di;
    dictEntry *de;
1123
    int touched = 0;
1124 1125 1126 1127

    /* expect setnum input keys to be given */
    setnum = atoi(c->argv[2]->ptr);
    if (setnum < 1) {
1128 1129
        addReplyError(c,
            "at least 1 input key is needed for ZUNIONSTORE/ZINTERSTORE");
1130 1131 1132 1133 1134 1135 1136 1137 1138 1139 1140 1141 1142 1143 1144 1145 1146 1147 1148 1149 1150 1151 1152 1153 1154 1155 1156 1157 1158 1159 1160 1161 1162 1163 1164 1165 1166 1167 1168
        return;
    }

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

    /* read keys to be used for input */
    src = zmalloc(sizeof(zsetopsrc) * setnum);
    for (i = 0, j = 3; i < setnum; i++, j++) {
        robj *obj = lookupKeyWrite(c->db,c->argv[j]);
        if (!obj) {
            src[i].dict = NULL;
        } else {
            if (obj->type == REDIS_ZSET) {
                src[i].dict = ((zset*)obj->ptr)->dict;
            } else if (obj->type == REDIS_SET) {
                src[i].dict = (obj->ptr);
            } else {
                zfree(src);
                addReply(c,shared.wrongtypeerr);
                return;
            }
        }

        /* default all weights to 1 */
        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--) {
1169 1170 1171 1172
                    if (getDoubleFromObjectOrReply(c,c->argv[j],&src[i].weight,
                            "weight value is not a double") != REDIS_OK)
                    {
                        zfree(src);
1173
                        return;
1174
                    }
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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;
            }
        }
    }

    /* sort sets from the smallest to largest, this will improve our
     * algorithm's performance */
    qsort(src,setnum,sizeof(zsetopsrc),qsortCompareZsetopsrcByCardinality);

    dstobj = createZsetObject();
    dstzset = dstobj->ptr;

    if (op == REDIS_OP_INTER) {
        /* skip going over all entries if the smallest zset is NULL or empty */
        if (src[0].dict && dictSize(src[0].dict) > 0) {
            /* precondition: as src[0].dict is non-empty and the zsets are ordered
             * from small to large, all src[i > 0].dict are non-empty too */
            di = dictGetIterator(src[0].dict);
            while((de = dictNext(di)) != NULL) {
1212
                double score, value;
1213

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                score = src[0].weight * zunionInterDictValue(de);
1215 1216 1217 1218
                for (j = 1; j < setnum; j++) {
                    dictEntry *other = dictFind(src[j].dict,dictGetEntryKey(de));
                    if (other) {
                        value = src[j].weight * zunionInterDictValue(other);
1219
                        zunionInterAggregate(&score,value,aggregate);
1220 1221 1222 1223 1224
                    } else {
                        break;
                    }
                }

1225 1226
                /* Only continue when present in every source dict. */
                if (j == setnum) {
1227
                    robj *o = dictGetEntryKey(de);
1228
                    znode = zslInsert(dstzset->zsl,score,o);
1229
                    incrRefCount(o); /* added to skiplist */
1230 1231
                    dictAdd(dstzset->dict,o,&znode->score);
                    incrRefCount(o); /* added to dictionary */
1232 1233 1234 1235 1236 1237 1238 1239 1240 1241
                }
            }
            dictReleaseIterator(di);
        }
    } else if (op == REDIS_OP_UNION) {
        for (i = 0; i < setnum; i++) {
            if (!src[i].dict) continue;

            di = dictGetIterator(src[i].dict);
            while((de = dictNext(di)) != NULL) {
1242 1243
                double score, value;

1244
                /* skip key when already processed */
1245 1246
                if (dictFind(dstzset->dict,dictGetEntryKey(de)) != NULL)
                    continue;
1247

1248 1249
                /* initialize score */
                score = src[i].weight * zunionInterDictValue(de);
1250 1251 1252 1253 1254 1255 1256

                /* because the zsets are sorted by size, its only possible
                 * for sets at larger indices to hold this entry */
                for (j = (i+1); j < setnum; j++) {
                    dictEntry *other = dictFind(src[j].dict,dictGetEntryKey(de));
                    if (other) {
                        value = src[j].weight * zunionInterDictValue(other);
1257
                        zunionInterAggregate(&score,value,aggregate);
1258 1259 1260 1261
                    }
                }

                robj *o = dictGetEntryKey(de);
1262
                znode = zslInsert(dstzset->zsl,score,o);
1263
                incrRefCount(o); /* added to skiplist */
1264 1265
                dictAdd(dstzset->dict,o,&znode->score);
                incrRefCount(o); /* added to dictionary */
1266 1267 1268 1269 1270 1271 1272 1273
            }
            dictReleaseIterator(di);
        }
    } else {
        /* unknown operator */
        redisAssert(op == REDIS_OP_INTER || op == REDIS_OP_UNION);
    }

1274
    if (dbDelete(c->db,dstkey)) {
1275
        signalModifiedKey(c->db,dstkey);
1276 1277 1278
        touched = 1;
        server.dirty++;
    }
1279 1280 1281
    if (dstzset->zsl->length) {
        dbAdd(c->db,dstkey,dstobj);
        addReplyLongLong(c, dstzset->zsl->length);
1282
        if (!touched) signalModifiedKey(c->db,dstkey);
A
antirez 已提交
1283
        server.dirty++;
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    } else {
        decrRefCount(dstobj);
        addReply(c, shared.czero);
    }
    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) {
1300 1301 1302
    robj *key = c->argv[1];
    robj *zobj;
    int withscores = 0;
1303 1304 1305
    long start;
    long end;
    int llen;
1306
    int rangelen;
1307 1308 1309 1310 1311 1312 1313 1314 1315 1316 1317

    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;
    }

1318 1319
    if ((zobj = lookupKeyReadOrReply(c,key,shared.emptymultibulk)) == NULL
         || checkType(c,zobj,REDIS_ZSET)) return;
1320

1321 1322
    /* Sanitize indexes. */
    llen = zsLength(zobj);
1323 1324 1325 1326
    if (start < 0) start = llen+start;
    if (end < 0) end = llen+end;
    if (start < 0) start = 0;

1327 1328
    /* Invariant: start >= 0, so this test will be true when end < 0.
     * The range is empty when start > end or start >= length. */
1329 1330 1331 1332 1333 1334 1335 1336
    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 */
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    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);

1351 1352 1353
        redisAssert(eptr != NULL);
        sptr = ziplistNext(zl,eptr);

1354
        while (rangelen--) {
1355
            redisAssert(eptr != NULL && sptr != NULL);
1356 1357 1358 1359 1360 1361
            redisAssert(ziplistGet(eptr,&vstr,&vlen,&vlong));
            if (vstr == NULL)
                addReplyBulkLongLong(c,vlong);
            else
                addReplyBulkCBuffer(c,vstr,vlen);

1362
            if (withscores)
1363 1364
                addReplyDouble(c,zzlGetScore(sptr));

1365 1366 1367 1368
            if (reverse)
                zzlPrev(zl,&eptr,&sptr);
            else
                zzlNext(zl,&eptr,&sptr);
1369 1370 1371 1372 1373 1374 1375 1376 1377 1378 1379 1380 1381 1382 1383 1384 1385 1386 1387 1388 1389 1390 1391 1392 1393 1394 1395 1396 1397
        }

    } else if (zobj->encoding == REDIS_ENCODING_RAW) {
        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--) {
            redisAssert(ln != NULL);
            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");
1398 1399 1400 1401 1402 1403 1404 1405 1406 1407 1408
    }
}

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

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

1409 1410 1411 1412
/* This command implements ZRANGEBYSCORE, ZREVRANGEBYSCORE and ZCOUNT.
 * If "justcount", only the number of elements in the range is returned. */
void genericZrangebyscoreCommand(redisClient *c, int reverse, int justcount) {
    zrangespec range;
1413 1414
    robj *key = c->argv[1];
    robj *emptyreply, *zobj;
1415 1416
    int offset = 0, limit = -1;
    int withscores = 0;
1417 1418
    unsigned long rangelen = 0;
    void *replylen = NULL;
1419
    int minidx, maxidx;
1420

1421
    /* Parse the range arguments. */
1422 1423 1424 1425 1426 1427 1428 1429 1430
    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) {
1431 1432 1433
        addReplyError(c,"min or max is not a double");
        return;
    }
1434 1435 1436 1437 1438 1439 1440 1441 1442 1443 1444 1445 1446 1447 1448 1449 1450 1451 1452 1453

    /* 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")) {
                offset = atoi(c->argv[pos+1]->ptr);
                limit = atoi(c->argv[pos+2]->ptr);
                pos += 3; remaining -= 3;
            } else {
                addReply(c,shared.syntaxerr);
                return;
            }
        }
1454
    }
1455 1456 1457

    /* Ok, lookup the key and get the range */
    emptyreply = justcount ? shared.czero : shared.emptymultibulk;
1458 1459
    if ((zobj = lookupKeyReadOrReply(c,key,emptyreply)) == NULL ||
        checkType(c,zobj,REDIS_ZSET)) return;
1460

1461 1462 1463 1464 1465 1466 1467
    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;
1468

1469 1470 1471 1472 1473
        /* If reversed, get the last node in range as starting point. */
        if (reverse)
            eptr = zzlLastInRange(zobj,range);
        else
            eptr = zzlFirstInRange(zobj,range);
1474

1475 1476 1477 1478 1479
        /* No "first" element in the specified interval. */
        if (eptr == NULL) {
            addReply(c,emptyreply);
            return;
        }
1480

1481 1482 1483
        /* Get score pointer for the first element. */
        redisAssert(eptr != NULL);
        sptr = ziplistNext(zl,eptr);
1484

1485 1486 1487 1488 1489 1490 1491 1492 1493 1494 1495 1496 1497 1498 1499 1500 1501 1502 1503 1504 1505 1506 1507 1508 1509 1510 1511 1512 1513 1514 1515 1516 1517 1518 1519 1520 1521 1522 1523 1524 1525 1526
        /* 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 */
        if (!justcount)
            replylen = addDeferredMultiBulkLength(c);

        /* If there is an offset, just traverse the number of elements without
         * checking the score because that is done in the next loop. */
        while (eptr && offset--)
            if (reverse)
                zzlPrev(zl,&eptr,&sptr);
            else
                zzlNext(zl,&eptr,&sptr);

        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;
            }

            /* Do our magic */
            rangelen++;
            if (!justcount) {
                redisAssert(ziplistGet(eptr,&vstr,&vlen,&vlong));
                if (vstr == NULL)
                    addReplyBulkLongLong(c,vlong);
                else
                    addReplyBulkCBuffer(c,vstr,vlen);

                if (withscores)
                    addReplyDouble(c,score);
            }

            /* Move to next node */
            if (reverse)
                zzlPrev(zl,&eptr,&sptr);
            else
                zzlNext(zl,&eptr,&sptr);
1527
        }
1528 1529 1530 1531
    } else if (zobj->encoding == REDIS_ENCODING_RAW) {
        zset *zs = zobj->ptr;
        zskiplist *zsl = zs->zsl;
        zskiplistNode *ln;
1532

1533 1534 1535 1536 1537 1538 1539 1540 1541 1542
        /* If reversed, get the last node in range as starting point. */
        if (reverse)
            ln = zslLastInRange(zsl,range);
        else
            ln = zslFirstInRange(zsl,range);

        /* No "first" element in the specified interval. */
        if (ln == NULL) {
            addReply(c,emptyreply);
            return;
1543 1544
        }

1545 1546 1547 1548 1549 1550 1551 1552 1553 1554 1555 1556 1557 1558 1559 1560 1561 1562 1563 1564 1565 1566 1567 1568 1569 1570 1571 1572 1573 1574 1575 1576
        /* 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 */
        if (!justcount)
            replylen = addDeferredMultiBulkLength(c);

        /* If there is an offset, just traverse the number of elements without
         * checking the score because that is done in the next loop. */
        while (ln && offset--)
            ln = reverse ? ln->backward : ln->level[0].forward;

        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;
            }

            /* Do our magic */
            rangelen++;
            if (!justcount) {
                addReplyBulk(c,ln->obj);
                if (withscores)
                    addReplyDouble(c,ln->score);
            }

            /* Move to next node */
            ln = reverse ? ln->backward : ln->level[0].forward;
        }
    } else {
        redisPanic("Unknown sorted set encoding");
1577 1578 1579 1580 1581
    }

    if (justcount) {
        addReplyLongLong(c,(long)rangelen);
    } else {
1582 1583
        if (withscores) rangelen *= 2;
        setDeferredMultiBulkLength(c,replylen,rangelen);
1584 1585 1586 1587
    }
}

void zrangebyscoreCommand(redisClient *c) {
1588 1589 1590 1591 1592
    genericZrangebyscoreCommand(c,0,0);
}

void zrevrangebyscoreCommand(redisClient *c) {
    genericZrangebyscoreCommand(c,1,0);
1593 1594 1595
}

void zcountCommand(redisClient *c) {
1596
    genericZrangebyscoreCommand(c,0,1);
1597 1598 1599
}

void zcardCommand(redisClient *c) {
1600 1601
    robj *key = c->argv[1];
    robj *zobj;
1602

1603 1604
    if ((zobj = lookupKeyReadOrReply(c,key,shared.czero)) == NULL ||
        checkType(c,zobj,REDIS_ZSET)) return;
1605

P
Pieter Noordhuis 已提交
1606
    addReplyLongLong(c,zsLength(zobj));
1607 1608 1609
}

void zscoreCommand(redisClient *c) {
1610 1611 1612
    robj *key = c->argv[1];
    robj *zobj;
    double score;
1613

1614 1615
    if ((zobj = lookupKeyReadOrReply(c,key,shared.nullbulk)) == NULL ||
        checkType(c,zobj,REDIS_ZSET)) return;
1616

1617 1618 1619 1620 1621 1622 1623 1624
    if (zobj->encoding == REDIS_ENCODING_ZIPLIST) {
        if (zzlFind(zobj,c->argv[2],&score) != NULL)
            addReplyDouble(c,score);
        else
            addReply(c,shared.nullbulk);
    } else if (zobj->encoding == REDIS_ENCODING_RAW) {
        zset *zs = zobj->ptr;
        dictEntry *de;
1625

1626 1627 1628 1629 1630 1631 1632 1633 1634 1635
        c->argv[2] = tryObjectEncoding(c->argv[2]);
        de = dictFind(zs->dict,c->argv[2]);
        if (de != NULL) {
            score = *(double*)dictGetEntryVal(de);
            addReplyDouble(c,score);
        } else {
            addReply(c,shared.nullbulk);
        }
    } else {
        redisPanic("Unknown sorted set encoding");
1636 1637 1638 1639
    }
}

void zrankGenericCommand(redisClient *c, int reverse) {
1640 1641 1642 1643
    robj *key = c->argv[1];
    robj *ele = c->argv[2];
    robj *zobj;
    unsigned long llen;
1644 1645
    unsigned long rank;

1646 1647 1648
    if ((zobj = lookupKeyReadOrReply(c,key,shared.nullbulk)) == NULL ||
        checkType(c,zobj,REDIS_ZSET)) return;
    llen = zsLength(zobj);
1649

1650 1651 1652 1653
    redisAssert(ele->encoding == REDIS_ENCODING_RAW);
    if (zobj->encoding == REDIS_ENCODING_ZIPLIST) {
        unsigned char *zl = zobj->ptr;
        unsigned char *eptr, *sptr;
1654

1655 1656 1657 1658 1659 1660 1661 1662 1663 1664 1665 1666 1667 1668 1669 1670 1671 1672
        eptr = ziplistIndex(zl,0);
        redisAssert(eptr != NULL);
        sptr = ziplistNext(zl,eptr);
        redisAssert(sptr != NULL);

        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);
1673
        } else {
1674 1675 1676 1677 1678 1679 1680 1681 1682 1683 1684 1685 1686 1687 1688 1689 1690 1691 1692 1693
            addReply(c,shared.nullbulk);
        }
    } else if (zobj->encoding == REDIS_ENCODING_RAW) {
        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) {
            score = *(double*)dictGetEntryVal(de);
            rank = zslGetRank(zsl,score,ele);
            redisAssert(rank); /* Existing elements always have a rank. */
            if (reverse)
                addReplyLongLong(c,llen-rank);
            else
                addReplyLongLong(c,rank-1);
        } else {
            addReply(c,shared.nullbulk);
1694 1695
        }
    } else {
1696
        redisPanic("Unknown sorted set encoding");
1697 1698 1699 1700 1701 1702 1703 1704 1705 1706
    }
}

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

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