mirror of
https://codeberg.org/redict/redict.git
synced 2025-01-23 00:28:26 -05:00
779aebc91c
looks like each platform implements long double differently (different bit count) so we can't save them as binary, and we also want to avoid creating a new RDB format version, so we save these are hex strings using "%La". This commit includes a change in the arguments of ld2string to support this. as well as tests for coverage and short reads. coded by @guybe7
835 lines
27 KiB
C
835 lines
27 KiB
C
/*
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* Copyright (c) 2009-2012, Salvatore Sanfilippo <antirez at gmail dot com>
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* All rights reserved.
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions are met:
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*
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* * Redistributions of source code must retain the above copyright notice,
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* this list of conditions and the following disclaimer.
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* * Redistributions in binary form must reproduce the above copyright
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* notice, this list of conditions and the following disclaimer in the
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* documentation and/or other materials provided with the distribution.
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* * Neither the name of Redis nor the names of its contributors may be used
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* to endorse or promote products derived from this software without
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* specific prior written permission.
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*
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* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
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* AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
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* IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
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* ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE
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* LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
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* CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
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* SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
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* INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
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* CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
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* ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
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* POSSIBILITY OF SUCH DAMAGE.
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*/
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#include "server.h"
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#include <math.h>
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/*-----------------------------------------------------------------------------
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* Hash type API
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*----------------------------------------------------------------------------*/
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/* Check the length of a number of objects to see if we need to convert a
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* ziplist to a real hash. Note that we only check string encoded objects
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* as their string length can be queried in constant time. */
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void hashTypeTryConversion(robj *o, robj **argv, int start, int end) {
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int i;
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if (o->encoding != OBJ_ENCODING_ZIPLIST) return;
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for (i = start; i <= end; i++) {
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if (sdsEncodedObject(argv[i]) &&
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sdslen(argv[i]->ptr) > server.hash_max_ziplist_value)
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{
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hashTypeConvert(o, OBJ_ENCODING_HT);
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break;
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}
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}
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}
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/* Get the value from a ziplist encoded hash, identified by field.
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* Returns -1 when the field cannot be found. */
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int hashTypeGetFromZiplist(robj *o, sds field,
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unsigned char **vstr,
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unsigned int *vlen,
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long long *vll)
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{
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unsigned char *zl, *fptr = NULL, *vptr = NULL;
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int ret;
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serverAssert(o->encoding == OBJ_ENCODING_ZIPLIST);
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zl = o->ptr;
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fptr = ziplistIndex(zl, ZIPLIST_HEAD);
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if (fptr != NULL) {
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fptr = ziplistFind(fptr, (unsigned char*)field, sdslen(field), 1);
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if (fptr != NULL) {
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/* Grab pointer to the value (fptr points to the field) */
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vptr = ziplistNext(zl, fptr);
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serverAssert(vptr != NULL);
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}
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}
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if (vptr != NULL) {
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ret = ziplistGet(vptr, vstr, vlen, vll);
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serverAssert(ret);
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return 0;
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}
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return -1;
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}
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/* Get the value from a hash table encoded hash, identified by field.
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* Returns NULL when the field cannot be found, otherwise the SDS value
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* is returned. */
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sds hashTypeGetFromHashTable(robj *o, sds field) {
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dictEntry *de;
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serverAssert(o->encoding == OBJ_ENCODING_HT);
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de = dictFind(o->ptr, field);
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if (de == NULL) return NULL;
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return dictGetVal(de);
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}
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/* Higher level function of hashTypeGet*() that returns the hash value
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* associated with the specified field. If the field is found C_OK
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* is returned, otherwise C_ERR. The returned object is returned by
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* reference in either *vstr and *vlen if it's returned in string form,
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* or stored in *vll if it's returned as a number.
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*
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* If *vll is populated *vstr is set to NULL, so the caller
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* can always check the function return by checking the return value
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* for C_OK and checking if vll (or vstr) is NULL. */
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int hashTypeGetValue(robj *o, sds field, unsigned char **vstr, unsigned int *vlen, long long *vll) {
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if (o->encoding == OBJ_ENCODING_ZIPLIST) {
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*vstr = NULL;
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if (hashTypeGetFromZiplist(o, field, vstr, vlen, vll) == 0)
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return C_OK;
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} else if (o->encoding == OBJ_ENCODING_HT) {
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sds value;
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if ((value = hashTypeGetFromHashTable(o, field)) != NULL) {
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*vstr = (unsigned char*) value;
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*vlen = sdslen(value);
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return C_OK;
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}
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} else {
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serverPanic("Unknown hash encoding");
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}
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return C_ERR;
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}
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/* Like hashTypeGetValue() but returns a Redis object, which is useful for
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* interaction with the hash type outside t_hash.c.
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* The function returns NULL if the field is not found in the hash. Otherwise
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* a newly allocated string object with the value is returned. */
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robj *hashTypeGetValueObject(robj *o, sds field) {
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unsigned char *vstr;
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unsigned int vlen;
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long long vll;
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if (hashTypeGetValue(o,field,&vstr,&vlen,&vll) == C_ERR) return NULL;
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if (vstr) return createStringObject((char*)vstr,vlen);
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else return createStringObjectFromLongLong(vll);
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}
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/* Higher level function using hashTypeGet*() to return the length of the
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* object associated with the requested field, or 0 if the field does not
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* exist. */
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size_t hashTypeGetValueLength(robj *o, sds field) {
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size_t len = 0;
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if (o->encoding == OBJ_ENCODING_ZIPLIST) {
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unsigned char *vstr = NULL;
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unsigned int vlen = UINT_MAX;
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long long vll = LLONG_MAX;
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if (hashTypeGetFromZiplist(o, field, &vstr, &vlen, &vll) == 0)
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len = vstr ? vlen : sdigits10(vll);
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} else if (o->encoding == OBJ_ENCODING_HT) {
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sds aux;
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if ((aux = hashTypeGetFromHashTable(o, field)) != NULL)
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len = sdslen(aux);
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} else {
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serverPanic("Unknown hash encoding");
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}
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return len;
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}
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/* Test if the specified field exists in the given hash. Returns 1 if the field
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* exists, and 0 when it doesn't. */
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int hashTypeExists(robj *o, sds field) {
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if (o->encoding == OBJ_ENCODING_ZIPLIST) {
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unsigned char *vstr = NULL;
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unsigned int vlen = UINT_MAX;
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long long vll = LLONG_MAX;
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if (hashTypeGetFromZiplist(o, field, &vstr, &vlen, &vll) == 0) return 1;
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} else if (o->encoding == OBJ_ENCODING_HT) {
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if (hashTypeGetFromHashTable(o, field) != NULL) return 1;
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} else {
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serverPanic("Unknown hash encoding");
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}
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return 0;
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}
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/* Add a new field, overwrite the old with the new value if it already exists.
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* Return 0 on insert and 1 on update.
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*
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* By default, the key and value SDS strings are copied if needed, so the
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* caller retains ownership of the strings passed. However this behavior
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* can be effected by passing appropriate flags (possibly bitwise OR-ed):
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*
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* HASH_SET_TAKE_FIELD -- The SDS field ownership passes to the function.
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* HASH_SET_TAKE_VALUE -- The SDS value ownership passes to the function.
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*
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* When the flags are used the caller does not need to release the passed
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* SDS string(s). It's up to the function to use the string to create a new
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* entry or to free the SDS string before returning to the caller.
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*
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* HASH_SET_COPY corresponds to no flags passed, and means the default
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* semantics of copying the values if needed.
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*
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*/
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#define HASH_SET_TAKE_FIELD (1<<0)
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#define HASH_SET_TAKE_VALUE (1<<1)
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#define HASH_SET_COPY 0
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int hashTypeSet(robj *o, sds field, sds value, int flags) {
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int update = 0;
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if (o->encoding == OBJ_ENCODING_ZIPLIST) {
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unsigned char *zl, *fptr, *vptr;
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zl = o->ptr;
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fptr = ziplistIndex(zl, ZIPLIST_HEAD);
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if (fptr != NULL) {
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fptr = ziplistFind(fptr, (unsigned char*)field, sdslen(field), 1);
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if (fptr != NULL) {
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/* Grab pointer to the value (fptr points to the field) */
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vptr = ziplistNext(zl, fptr);
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serverAssert(vptr != NULL);
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update = 1;
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/* Delete value */
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zl = ziplistDelete(zl, &vptr);
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/* Insert new value */
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zl = ziplistInsert(zl, vptr, (unsigned char*)value,
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sdslen(value));
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}
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}
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if (!update) {
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/* Push new field/value pair onto the tail of the ziplist */
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zl = ziplistPush(zl, (unsigned char*)field, sdslen(field),
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ZIPLIST_TAIL);
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zl = ziplistPush(zl, (unsigned char*)value, sdslen(value),
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ZIPLIST_TAIL);
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}
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o->ptr = zl;
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/* Check if the ziplist needs to be converted to a hash table */
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if (hashTypeLength(o) > server.hash_max_ziplist_entries)
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hashTypeConvert(o, OBJ_ENCODING_HT);
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} else if (o->encoding == OBJ_ENCODING_HT) {
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dictEntry *de = dictFind(o->ptr,field);
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if (de) {
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sdsfree(dictGetVal(de));
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if (flags & HASH_SET_TAKE_VALUE) {
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dictGetVal(de) = value;
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value = NULL;
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} else {
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dictGetVal(de) = sdsdup(value);
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}
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update = 1;
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} else {
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sds f,v;
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if (flags & HASH_SET_TAKE_FIELD) {
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f = field;
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field = NULL;
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} else {
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f = sdsdup(field);
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}
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if (flags & HASH_SET_TAKE_VALUE) {
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v = value;
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value = NULL;
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} else {
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v = sdsdup(value);
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}
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dictAdd(o->ptr,f,v);
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}
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} else {
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serverPanic("Unknown hash encoding");
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}
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/* Free SDS strings we did not referenced elsewhere if the flags
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* want this function to be responsible. */
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if (flags & HASH_SET_TAKE_FIELD && field) sdsfree(field);
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if (flags & HASH_SET_TAKE_VALUE && value) sdsfree(value);
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return update;
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}
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/* Delete an element from a hash.
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* Return 1 on deleted and 0 on not found. */
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int hashTypeDelete(robj *o, sds field) {
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int deleted = 0;
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if (o->encoding == OBJ_ENCODING_ZIPLIST) {
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unsigned char *zl, *fptr;
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zl = o->ptr;
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fptr = ziplistIndex(zl, ZIPLIST_HEAD);
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if (fptr != NULL) {
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fptr = ziplistFind(fptr, (unsigned char*)field, sdslen(field), 1);
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if (fptr != NULL) {
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zl = ziplistDelete(zl,&fptr); /* Delete the key. */
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zl = ziplistDelete(zl,&fptr); /* Delete the value. */
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o->ptr = zl;
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deleted = 1;
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}
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}
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} else if (o->encoding == OBJ_ENCODING_HT) {
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if (dictDelete((dict*)o->ptr, field) == C_OK) {
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deleted = 1;
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/* Always check if the dictionary needs a resize after a delete. */
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if (htNeedsResize(o->ptr)) dictResize(o->ptr);
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}
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} else {
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serverPanic("Unknown hash encoding");
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}
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return deleted;
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}
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/* Return the number of elements in a hash. */
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unsigned long hashTypeLength(const robj *o) {
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unsigned long length = ULONG_MAX;
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if (o->encoding == OBJ_ENCODING_ZIPLIST) {
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length = ziplistLen(o->ptr) / 2;
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} else if (o->encoding == OBJ_ENCODING_HT) {
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length = dictSize((const dict*)o->ptr);
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} else {
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serverPanic("Unknown hash encoding");
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}
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return length;
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}
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hashTypeIterator *hashTypeInitIterator(robj *subject) {
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hashTypeIterator *hi = zmalloc(sizeof(hashTypeIterator));
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hi->subject = subject;
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hi->encoding = subject->encoding;
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if (hi->encoding == OBJ_ENCODING_ZIPLIST) {
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hi->fptr = NULL;
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hi->vptr = NULL;
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} else if (hi->encoding == OBJ_ENCODING_HT) {
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hi->di = dictGetIterator(subject->ptr);
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} else {
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serverPanic("Unknown hash encoding");
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}
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return hi;
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}
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void hashTypeReleaseIterator(hashTypeIterator *hi) {
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if (hi->encoding == OBJ_ENCODING_HT)
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dictReleaseIterator(hi->di);
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zfree(hi);
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}
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/* Move to the next entry in the hash. Return C_OK when the next entry
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* could be found and C_ERR when the iterator reaches the end. */
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int hashTypeNext(hashTypeIterator *hi) {
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if (hi->encoding == OBJ_ENCODING_ZIPLIST) {
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unsigned char *zl;
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unsigned char *fptr, *vptr;
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zl = hi->subject->ptr;
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fptr = hi->fptr;
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vptr = hi->vptr;
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if (fptr == NULL) {
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/* Initialize cursor */
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serverAssert(vptr == NULL);
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fptr = ziplistIndex(zl, 0);
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} else {
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/* Advance cursor */
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serverAssert(vptr != NULL);
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fptr = ziplistNext(zl, vptr);
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}
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if (fptr == NULL) return C_ERR;
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/* Grab pointer to the value (fptr points to the field) */
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vptr = ziplistNext(zl, fptr);
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serverAssert(vptr != NULL);
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/* fptr, vptr now point to the first or next pair */
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hi->fptr = fptr;
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hi->vptr = vptr;
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} else if (hi->encoding == OBJ_ENCODING_HT) {
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if ((hi->de = dictNext(hi->di)) == NULL) return C_ERR;
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} else {
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serverPanic("Unknown hash encoding");
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}
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return C_OK;
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}
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/* Get the field or value at iterator cursor, for an iterator on a hash value
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* encoded as a ziplist. Prototype is similar to `hashTypeGetFromZiplist`. */
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void hashTypeCurrentFromZiplist(hashTypeIterator *hi, int what,
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unsigned char **vstr,
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unsigned int *vlen,
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long long *vll)
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{
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int ret;
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serverAssert(hi->encoding == OBJ_ENCODING_ZIPLIST);
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if (what & OBJ_HASH_KEY) {
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ret = ziplistGet(hi->fptr, vstr, vlen, vll);
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serverAssert(ret);
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} else {
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ret = ziplistGet(hi->vptr, vstr, vlen, vll);
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serverAssert(ret);
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}
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}
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/* Get the field or value at iterator cursor, for an iterator on a hash value
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* encoded as a hash table. Prototype is similar to
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* `hashTypeGetFromHashTable`. */
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sds hashTypeCurrentFromHashTable(hashTypeIterator *hi, int what) {
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serverAssert(hi->encoding == OBJ_ENCODING_HT);
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if (what & OBJ_HASH_KEY) {
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return dictGetKey(hi->de);
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} else {
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return dictGetVal(hi->de);
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}
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}
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/* Higher level function of hashTypeCurrent*() that returns the hash value
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* at current iterator position.
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*
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* The returned element is returned by reference in either *vstr and *vlen if
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* it's returned in string form, or stored in *vll if it's returned as
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* a number.
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*
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* If *vll is populated *vstr is set to NULL, so the caller
|
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* can always check the function return by checking the return value
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* type checking if vstr == NULL. */
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void hashTypeCurrentObject(hashTypeIterator *hi, int what, unsigned char **vstr, unsigned int *vlen, long long *vll) {
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if (hi->encoding == OBJ_ENCODING_ZIPLIST) {
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*vstr = NULL;
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hashTypeCurrentFromZiplist(hi, what, vstr, vlen, vll);
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} else if (hi->encoding == OBJ_ENCODING_HT) {
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sds ele = hashTypeCurrentFromHashTable(hi, what);
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*vstr = (unsigned char*) ele;
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*vlen = sdslen(ele);
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} else {
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serverPanic("Unknown hash encoding");
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}
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}
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/* Return the key or value at the current iterator position as a new
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* SDS string. */
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sds hashTypeCurrentObjectNewSds(hashTypeIterator *hi, int what) {
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unsigned char *vstr;
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unsigned int vlen;
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long long vll;
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hashTypeCurrentObject(hi,what,&vstr,&vlen,&vll);
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if (vstr) return sdsnewlen(vstr,vlen);
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return sdsfromlonglong(vll);
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}
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robj *hashTypeLookupWriteOrCreate(client *c, robj *key) {
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robj *o = lookupKeyWrite(c->db,key);
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if (o == NULL) {
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o = createHashObject();
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dbAdd(c->db,key,o);
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} else {
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if (o->type != OBJ_HASH) {
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addReply(c,shared.wrongtypeerr);
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return NULL;
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}
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}
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return o;
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}
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void hashTypeConvertZiplist(robj *o, int enc) {
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serverAssert(o->encoding == OBJ_ENCODING_ZIPLIST);
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if (enc == OBJ_ENCODING_ZIPLIST) {
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/* Nothing to do... */
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} else if (enc == OBJ_ENCODING_HT) {
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hashTypeIterator *hi;
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dict *dict;
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int ret;
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hi = hashTypeInitIterator(o);
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dict = dictCreate(&hashDictType, NULL);
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while (hashTypeNext(hi) != C_ERR) {
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sds key, value;
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key = hashTypeCurrentObjectNewSds(hi,OBJ_HASH_KEY);
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value = hashTypeCurrentObjectNewSds(hi,OBJ_HASH_VALUE);
|
|
ret = dictAdd(dict, key, value);
|
|
if (ret != DICT_OK) {
|
|
serverLogHexDump(LL_WARNING,"ziplist with dup elements dump",
|
|
o->ptr,ziplistBlobLen(o->ptr));
|
|
serverPanic("Ziplist corruption detected");
|
|
}
|
|
}
|
|
hashTypeReleaseIterator(hi);
|
|
zfree(o->ptr);
|
|
o->encoding = OBJ_ENCODING_HT;
|
|
o->ptr = dict;
|
|
} else {
|
|
serverPanic("Unknown hash encoding");
|
|
}
|
|
}
|
|
|
|
void hashTypeConvert(robj *o, int enc) {
|
|
if (o->encoding == OBJ_ENCODING_ZIPLIST) {
|
|
hashTypeConvertZiplist(o, enc);
|
|
} else if (o->encoding == OBJ_ENCODING_HT) {
|
|
serverPanic("Not implemented");
|
|
} else {
|
|
serverPanic("Unknown hash encoding");
|
|
}
|
|
}
|
|
|
|
/*-----------------------------------------------------------------------------
|
|
* Hash type commands
|
|
*----------------------------------------------------------------------------*/
|
|
|
|
void hsetnxCommand(client *c) {
|
|
robj *o;
|
|
if ((o = hashTypeLookupWriteOrCreate(c,c->argv[1])) == NULL) return;
|
|
hashTypeTryConversion(o,c->argv,2,3);
|
|
|
|
if (hashTypeExists(o, c->argv[2]->ptr)) {
|
|
addReply(c, shared.czero);
|
|
} else {
|
|
hashTypeSet(o,c->argv[2]->ptr,c->argv[3]->ptr,HASH_SET_COPY);
|
|
addReply(c, shared.cone);
|
|
signalModifiedKey(c->db,c->argv[1]);
|
|
notifyKeyspaceEvent(NOTIFY_HASH,"hset",c->argv[1],c->db->id);
|
|
server.dirty++;
|
|
}
|
|
}
|
|
|
|
void hsetCommand(client *c) {
|
|
int i, created = 0;
|
|
robj *o;
|
|
|
|
if ((c->argc % 2) == 1) {
|
|
addReplyError(c,"wrong number of arguments for HMSET");
|
|
return;
|
|
}
|
|
|
|
if ((o = hashTypeLookupWriteOrCreate(c,c->argv[1])) == NULL) return;
|
|
hashTypeTryConversion(o,c->argv,2,c->argc-1);
|
|
|
|
for (i = 2; i < c->argc; i += 2)
|
|
created += !hashTypeSet(o,c->argv[i]->ptr,c->argv[i+1]->ptr,HASH_SET_COPY);
|
|
|
|
/* HMSET (deprecated) and HSET return value is different. */
|
|
char *cmdname = c->argv[0]->ptr;
|
|
if (cmdname[1] == 's' || cmdname[1] == 'S') {
|
|
/* HSET */
|
|
addReplyLongLong(c, created);
|
|
} else {
|
|
/* HMSET */
|
|
addReply(c, shared.ok);
|
|
}
|
|
signalModifiedKey(c->db,c->argv[1]);
|
|
notifyKeyspaceEvent(NOTIFY_HASH,"hset",c->argv[1],c->db->id);
|
|
server.dirty++;
|
|
}
|
|
|
|
void hincrbyCommand(client *c) {
|
|
long long value, incr, oldvalue;
|
|
robj *o;
|
|
sds new;
|
|
unsigned char *vstr;
|
|
unsigned int vlen;
|
|
|
|
if (getLongLongFromObjectOrReply(c,c->argv[3],&incr,NULL) != C_OK) return;
|
|
if ((o = hashTypeLookupWriteOrCreate(c,c->argv[1])) == NULL) return;
|
|
if (hashTypeGetValue(o,c->argv[2]->ptr,&vstr,&vlen,&value) == C_OK) {
|
|
if (vstr) {
|
|
if (string2ll((char*)vstr,vlen,&value) == 0) {
|
|
addReplyError(c,"hash value is not an integer");
|
|
return;
|
|
}
|
|
} /* Else hashTypeGetValue() already stored it into &value */
|
|
} else {
|
|
value = 0;
|
|
}
|
|
|
|
oldvalue = value;
|
|
if ((incr < 0 && oldvalue < 0 && incr < (LLONG_MIN-oldvalue)) ||
|
|
(incr > 0 && oldvalue > 0 && incr > (LLONG_MAX-oldvalue))) {
|
|
addReplyError(c,"increment or decrement would overflow");
|
|
return;
|
|
}
|
|
value += incr;
|
|
new = sdsfromlonglong(value);
|
|
hashTypeSet(o,c->argv[2]->ptr,new,HASH_SET_TAKE_VALUE);
|
|
addReplyLongLong(c,value);
|
|
signalModifiedKey(c->db,c->argv[1]);
|
|
notifyKeyspaceEvent(NOTIFY_HASH,"hincrby",c->argv[1],c->db->id);
|
|
server.dirty++;
|
|
}
|
|
|
|
void hincrbyfloatCommand(client *c) {
|
|
long double value, incr;
|
|
long long ll;
|
|
robj *o;
|
|
sds new;
|
|
unsigned char *vstr;
|
|
unsigned int vlen;
|
|
|
|
if (getLongDoubleFromObjectOrReply(c,c->argv[3],&incr,NULL) != C_OK) return;
|
|
if ((o = hashTypeLookupWriteOrCreate(c,c->argv[1])) == NULL) return;
|
|
if (hashTypeGetValue(o,c->argv[2]->ptr,&vstr,&vlen,&ll) == C_OK) {
|
|
if (vstr) {
|
|
if (string2ld((char*)vstr,vlen,&value) == 0) {
|
|
addReplyError(c,"hash value is not a float");
|
|
return;
|
|
}
|
|
} else {
|
|
value = (long double)ll;
|
|
}
|
|
} else {
|
|
value = 0;
|
|
}
|
|
|
|
value += incr;
|
|
if (isnan(value) || isinf(value)) {
|
|
addReplyError(c,"increment would produce NaN or Infinity");
|
|
return;
|
|
}
|
|
|
|
char buf[MAX_LONG_DOUBLE_CHARS];
|
|
int len = ld2string(buf,sizeof(buf),value,LD_STR_HUMAN);
|
|
new = sdsnewlen(buf,len);
|
|
hashTypeSet(o,c->argv[2]->ptr,new,HASH_SET_TAKE_VALUE);
|
|
addReplyBulkCBuffer(c,buf,len);
|
|
signalModifiedKey(c->db,c->argv[1]);
|
|
notifyKeyspaceEvent(NOTIFY_HASH,"hincrbyfloat",c->argv[1],c->db->id);
|
|
server.dirty++;
|
|
|
|
/* Always replicate HINCRBYFLOAT as an HSET command with the final value
|
|
* in order to make sure that differences in float pricision or formatting
|
|
* will not create differences in replicas or after an AOF restart. */
|
|
robj *aux, *newobj;
|
|
aux = createStringObject("HSET",4);
|
|
newobj = createRawStringObject(buf,len);
|
|
rewriteClientCommandArgument(c,0,aux);
|
|
decrRefCount(aux);
|
|
rewriteClientCommandArgument(c,3,newobj);
|
|
decrRefCount(newobj);
|
|
}
|
|
|
|
static void addHashFieldToReply(client *c, robj *o, sds field) {
|
|
int ret;
|
|
|
|
if (o == NULL) {
|
|
addReplyNull(c);
|
|
return;
|
|
}
|
|
|
|
if (o->encoding == OBJ_ENCODING_ZIPLIST) {
|
|
unsigned char *vstr = NULL;
|
|
unsigned int vlen = UINT_MAX;
|
|
long long vll = LLONG_MAX;
|
|
|
|
ret = hashTypeGetFromZiplist(o, field, &vstr, &vlen, &vll);
|
|
if (ret < 0) {
|
|
addReplyNull(c);
|
|
} else {
|
|
if (vstr) {
|
|
addReplyBulkCBuffer(c, vstr, vlen);
|
|
} else {
|
|
addReplyBulkLongLong(c, vll);
|
|
}
|
|
}
|
|
|
|
} else if (o->encoding == OBJ_ENCODING_HT) {
|
|
sds value = hashTypeGetFromHashTable(o, field);
|
|
if (value == NULL)
|
|
addReplyNull(c);
|
|
else
|
|
addReplyBulkCBuffer(c, value, sdslen(value));
|
|
} else {
|
|
serverPanic("Unknown hash encoding");
|
|
}
|
|
}
|
|
|
|
void hgetCommand(client *c) {
|
|
robj *o;
|
|
|
|
if ((o = lookupKeyReadOrReply(c,c->argv[1],shared.null[c->resp])) == NULL ||
|
|
checkType(c,o,OBJ_HASH)) return;
|
|
|
|
addHashFieldToReply(c, o, c->argv[2]->ptr);
|
|
}
|
|
|
|
void hmgetCommand(client *c) {
|
|
robj *o;
|
|
int i;
|
|
|
|
/* Don't abort when the key cannot be found. Non-existing keys are empty
|
|
* hashes, where HMGET should respond with a series of null bulks. */
|
|
o = lookupKeyRead(c->db, c->argv[1]);
|
|
if (o != NULL && o->type != OBJ_HASH) {
|
|
addReply(c, shared.wrongtypeerr);
|
|
return;
|
|
}
|
|
|
|
addReplyArrayLen(c, c->argc-2);
|
|
for (i = 2; i < c->argc; i++) {
|
|
addHashFieldToReply(c, o, c->argv[i]->ptr);
|
|
}
|
|
}
|
|
|
|
void hdelCommand(client *c) {
|
|
robj *o;
|
|
int j, deleted = 0, keyremoved = 0;
|
|
|
|
if ((o = lookupKeyWriteOrReply(c,c->argv[1],shared.czero)) == NULL ||
|
|
checkType(c,o,OBJ_HASH)) return;
|
|
|
|
for (j = 2; j < c->argc; j++) {
|
|
if (hashTypeDelete(o,c->argv[j]->ptr)) {
|
|
deleted++;
|
|
if (hashTypeLength(o) == 0) {
|
|
dbDelete(c->db,c->argv[1]);
|
|
keyremoved = 1;
|
|
break;
|
|
}
|
|
}
|
|
}
|
|
if (deleted) {
|
|
signalModifiedKey(c->db,c->argv[1]);
|
|
notifyKeyspaceEvent(NOTIFY_HASH,"hdel",c->argv[1],c->db->id);
|
|
if (keyremoved)
|
|
notifyKeyspaceEvent(NOTIFY_GENERIC,"del",c->argv[1],
|
|
c->db->id);
|
|
server.dirty += deleted;
|
|
}
|
|
addReplyLongLong(c,deleted);
|
|
}
|
|
|
|
void hlenCommand(client *c) {
|
|
robj *o;
|
|
|
|
if ((o = lookupKeyReadOrReply(c,c->argv[1],shared.czero)) == NULL ||
|
|
checkType(c,o,OBJ_HASH)) return;
|
|
|
|
addReplyLongLong(c,hashTypeLength(o));
|
|
}
|
|
|
|
void hstrlenCommand(client *c) {
|
|
robj *o;
|
|
|
|
if ((o = lookupKeyReadOrReply(c,c->argv[1],shared.czero)) == NULL ||
|
|
checkType(c,o,OBJ_HASH)) return;
|
|
addReplyLongLong(c,hashTypeGetValueLength(o,c->argv[2]->ptr));
|
|
}
|
|
|
|
static void addHashIteratorCursorToReply(client *c, hashTypeIterator *hi, int what) {
|
|
if (hi->encoding == OBJ_ENCODING_ZIPLIST) {
|
|
unsigned char *vstr = NULL;
|
|
unsigned int vlen = UINT_MAX;
|
|
long long vll = LLONG_MAX;
|
|
|
|
hashTypeCurrentFromZiplist(hi, what, &vstr, &vlen, &vll);
|
|
if (vstr)
|
|
addReplyBulkCBuffer(c, vstr, vlen);
|
|
else
|
|
addReplyBulkLongLong(c, vll);
|
|
} else if (hi->encoding == OBJ_ENCODING_HT) {
|
|
sds value = hashTypeCurrentFromHashTable(hi, what);
|
|
addReplyBulkCBuffer(c, value, sdslen(value));
|
|
} else {
|
|
serverPanic("Unknown hash encoding");
|
|
}
|
|
}
|
|
|
|
void genericHgetallCommand(client *c, int flags) {
|
|
robj *o;
|
|
hashTypeIterator *hi;
|
|
int length, count = 0;
|
|
|
|
if ((o = lookupKeyReadOrReply(c,c->argv[1],shared.emptymap[c->resp]))
|
|
== NULL || checkType(c,o,OBJ_HASH)) return;
|
|
|
|
/* We return a map if the user requested keys and values, like in the
|
|
* HGETALL case. Otherwise to use a flat array makes more sense. */
|
|
length = hashTypeLength(o);
|
|
if (flags & OBJ_HASH_KEY && flags & OBJ_HASH_VALUE) {
|
|
addReplyMapLen(c, length);
|
|
} else {
|
|
addReplyArrayLen(c, length);
|
|
}
|
|
|
|
hi = hashTypeInitIterator(o);
|
|
while (hashTypeNext(hi) != C_ERR) {
|
|
if (flags & OBJ_HASH_KEY) {
|
|
addHashIteratorCursorToReply(c, hi, OBJ_HASH_KEY);
|
|
count++;
|
|
}
|
|
if (flags & OBJ_HASH_VALUE) {
|
|
addHashIteratorCursorToReply(c, hi, OBJ_HASH_VALUE);
|
|
count++;
|
|
}
|
|
}
|
|
|
|
hashTypeReleaseIterator(hi);
|
|
|
|
/* Make sure we returned the right number of elements. */
|
|
if (flags & OBJ_HASH_KEY && flags & OBJ_HASH_VALUE) count /= 2;
|
|
serverAssert(count == length);
|
|
}
|
|
|
|
void hkeysCommand(client *c) {
|
|
genericHgetallCommand(c,OBJ_HASH_KEY);
|
|
}
|
|
|
|
void hvalsCommand(client *c) {
|
|
genericHgetallCommand(c,OBJ_HASH_VALUE);
|
|
}
|
|
|
|
void hgetallCommand(client *c) {
|
|
genericHgetallCommand(c,OBJ_HASH_KEY|OBJ_HASH_VALUE);
|
|
}
|
|
|
|
void hexistsCommand(client *c) {
|
|
robj *o;
|
|
if ((o = lookupKeyReadOrReply(c,c->argv[1],shared.czero)) == NULL ||
|
|
checkType(c,o,OBJ_HASH)) return;
|
|
|
|
addReply(c, hashTypeExists(o,c->argv[2]->ptr) ? shared.cone : shared.czero);
|
|
}
|
|
|
|
void hscanCommand(client *c) {
|
|
robj *o;
|
|
unsigned long cursor;
|
|
|
|
if (parseScanCursorOrReply(c,c->argv[2],&cursor) == C_ERR) return;
|
|
if ((o = lookupKeyReadOrReply(c,c->argv[1],shared.emptyscan)) == NULL ||
|
|
checkType(c,o,OBJ_HASH)) return;
|
|
scanGenericCommand(c,o,cursor);
|
|
}
|