cluster.c 134.1 KB
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/* Redis Cluster implementation.
 *
 * Copyright (c) 2009-2012, Salvatore Sanfilippo <antirez at gmail dot com>
 * All rights reserved.
 *
 * Redistribution and use in source and binary forms, with or without
 * modification, are permitted provided that the following conditions are met:
 *
 *   * Redistributions of source code must retain the above copyright notice,
 *     this list of conditions and the following disclaimer.
 *   * Redistributions in binary form must reproduce the above copyright
 *     notice, this list of conditions and the following disclaimer in the
 *     documentation and/or other materials provided with the distribution.
 *   * Neither the name of Redis nor the names of its contributors may be used
 *     to endorse or promote products derived from this software without
 *     specific prior written permission.
 *
 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
 * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
 * ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE
 * LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
 * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
 * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
 * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
 * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
 * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
 * POSSIBILITY OF SUCH DAMAGE.
 */

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#include "redis.h"
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#include "cluster.h"
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#include "endianconv.h"
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#include <sys/types.h>
#include <sys/socket.h>
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#include <arpa/inet.h>
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#include <fcntl.h>
#include <unistd.h>
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#include <sys/socket.h>
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#include <sys/stat.h>
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/* A global reference to myself is handy to make code more clear.
 * Myself always points to server.cluster->myself, that is, the clusterNode
 * that represents this node. */
clusterNode *myself = NULL;

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clusterNode *createClusterNode(char *nodename, int flags);
int clusterAddNode(clusterNode *node);
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void clusterAcceptHandler(aeEventLoop *el, int fd, void *privdata, int mask);
void clusterReadHandler(aeEventLoop *el, int fd, void *privdata, int mask);
void clusterSendPing(clusterLink *link, int type);
void clusterSendFail(char *nodename);
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void clusterSendFailoverAuthIfNeeded(clusterNode *node, clusterMsg *request);
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void clusterUpdateState(void);
int clusterNodeGetSlotBit(clusterNode *n, int slot);
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sds clusterGenNodesDescription(int filter);
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clusterNode *clusterLookupNode(char *name);
int clusterNodeAddSlave(clusterNode *master, clusterNode *slave);
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int clusterAddSlot(clusterNode *n, int slot);
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int clusterDelSlot(int slot);
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int clusterDelNodeSlots(clusterNode *node);
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int clusterNodeSetSlotBit(clusterNode *n, int slot);
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void clusterSetMaster(clusterNode *n);
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void clusterHandleSlaveFailover(void);
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int bitmapTestBit(unsigned char *bitmap, int pos);
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void clusterDoBeforeSleep(int flags);
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void clusterSendUpdate(clusterLink *link, clusterNode *node);
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/* -----------------------------------------------------------------------------
 * Initialization
 * -------------------------------------------------------------------------- */

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/* This function is called at startup in order to set the currentEpoch
 * (which is not saved on permanent storage) to the greatest configEpoch found
 * in the loaded nodes (configEpoch is stored on permanent storage as soon as
 * it changes for some node). */
void clusterSetStartupEpoch() {
    dictIterator *di;
    dictEntry *de;

    di = dictGetSafeIterator(server.cluster->nodes);
    while((de = dictNext(di)) != NULL) {
        clusterNode *node = dictGetVal(de);
        if (node->configEpoch > server.cluster->currentEpoch)
            server.cluster->currentEpoch = node->configEpoch;
    }
    dictReleaseIterator(di);
}

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int clusterLoadConfig(char *filename) {
    FILE *fp = fopen(filename,"r");
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    char *line;
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    int maxline, j;
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    if (fp == NULL) return REDIS_ERR;
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    /* Parse the file. Note that single liens of the cluster config file can
     * be really long as they include all the hash slots of the node.
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     * This means in the worst possible case, half of the Redis slots will be
     * present in a single line, possibly in importing or migrating state, so
     * together with the node ID of the sender/receiver.
     *
     * To simplify we allocate 1024+REDIS_CLUSTER_SLOTS*128 bytes per line. */
    maxline = 1024+REDIS_CLUSTER_SLOTS*128;
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    line = zmalloc(maxline);
    while(fgets(line,maxline,fp) != NULL) {
        int argc;
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        sds *argv;
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        clusterNode *n, *master;
        char *p, *s;

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        /* Skip blank lines, they can be created either by users manually
         * editing nodes.conf or by the config writing process if stopped
         * before the truncate() call. */
        if (line[0] == '\n') continue;

        /* Split the line into arguments for processing. */
        argv = sdssplitargs(line,&argc);
        if (argv == NULL) goto fmterr;

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        /* Create this node if it does not exist */
        n = clusterLookupNode(argv[0]);
        if (!n) {
            n = createClusterNode(argv[0],0);
            clusterAddNode(n);
        }
        /* Address and port */
        if ((p = strchr(argv[1],':')) == NULL) goto fmterr;
        *p = '\0';
        memcpy(n->ip,argv[1],strlen(argv[1])+1);
        n->port = atoi(p+1);

        /* Parse flags */
        p = s = argv[2];
        while(p) {
            p = strchr(s,',');
            if (p) *p = '\0';
            if (!strcasecmp(s,"myself")) {
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                redisAssert(server.cluster->myself == NULL);
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                myself = server.cluster->myself = n;
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                n->flags |= REDIS_NODE_MYSELF;
            } else if (!strcasecmp(s,"master")) {
                n->flags |= REDIS_NODE_MASTER;
            } else if (!strcasecmp(s,"slave")) {
                n->flags |= REDIS_NODE_SLAVE;
            } else if (!strcasecmp(s,"fail?")) {
                n->flags |= REDIS_NODE_PFAIL;
            } else if (!strcasecmp(s,"fail")) {
                n->flags |= REDIS_NODE_FAIL;
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                n->fail_time = mstime();
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            } else if (!strcasecmp(s,"handshake")) {
                n->flags |= REDIS_NODE_HANDSHAKE;
            } else if (!strcasecmp(s,"noaddr")) {
                n->flags |= REDIS_NODE_NOADDR;
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            } else if (!strcasecmp(s,"noflags")) {
                /* nothing to do */
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            } else {
                redisPanic("Unknown flag in redis cluster config file");
            }
            if (p) s = p+1;
        }

        /* Get master if any. Set the master and populate master's
         * slave list. */
        if (argv[3][0] != '-') {
            master = clusterLookupNode(argv[3]);
            if (!master) {
                master = createClusterNode(argv[3],0);
                clusterAddNode(master);
            }
            n->slaveof = master;
            clusterNodeAddSlave(master,n);
        }

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        /* Set ping sent / pong received timestamps */
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        if (atoi(argv[4])) n->ping_sent = mstime();
        if (atoi(argv[5])) n->pong_received = mstime();
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        /* Set configEpoch for this node. */
        n->configEpoch = strtoull(argv[6],NULL,10);

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        /* Populate hash slots served by this instance. */
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        for (j = 8; j < argc; j++) {
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            int start, stop;

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            if (argv[j][0] == '[') {
                /* Here we handle migrating / importing slots */
                int slot;
                char direction;
                clusterNode *cn;

                p = strchr(argv[j],'-');
                redisAssert(p != NULL);
                *p = '\0';
                direction = p[1]; /* Either '>' or '<' */
                slot = atoi(argv[j]+1);
                p += 3;
                cn = clusterLookupNode(p);
                if (!cn) {
                    cn = createClusterNode(p,0);
                    clusterAddNode(cn);
                }
                if (direction == '>') {
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                    server.cluster->migrating_slots_to[slot] = cn;
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                } else {
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                    server.cluster->importing_slots_from[slot] = cn;
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                }
                continue;
            } else if ((p = strchr(argv[j],'-')) != NULL) {
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                *p = '\0';
                start = atoi(argv[j]);
                stop = atoi(p+1);
            } else {
                start = stop = atoi(argv[j]);
            }
            while(start <= stop) clusterAddSlot(n, start++);
        }
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        sdsfreesplitres(argv,argc);
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    }
    zfree(line);
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    fclose(fp);

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    /* Config sanity check */
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    redisAssert(server.cluster->myself != NULL);
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    redisLog(REDIS_NOTICE,"Node configuration loaded, I'm %.40s", myself->name);
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    clusterSetStartupEpoch();
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    return REDIS_OK;

fmterr:
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    redisLog(REDIS_WARNING,"Unrecoverable error: corrupted cluster config file.");
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    fclose(fp);
    exit(1);
}

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/* Cluster node configuration is exactly the same as CLUSTER NODES output.
 *
 * This function writes the node config and returns 0, on error -1
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 * is returned.
 *
 * Note: we need to write the file in an atomic way from the point of view
 * of the POSIX filesystem semantics, so that if the server is stopped
 * or crashes during the write, we'll end with either the old file or the
 * new one. Since we have the full payload to write available we can use
 * a single write to write the whole file. If the pre-existing file was
 * bigger we pad our payload with newlines that are anyway ignored and truncate
 * the file afterward. */
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int clusterSaveConfig(int do_fsync) {
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    sds ci = clusterGenNodesDescription(REDIS_NODE_HANDSHAKE);
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    size_t content_size = sdslen(ci);
    struct stat sb;
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    int fd;
    
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    if ((fd = open(server.cluster_configfile,O_WRONLY|O_CREAT,0644))
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        == -1) goto err;
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    /* Pad the new payload if the existing file length is greater. */
    if (fstat(fd,&sb) != -1) {
        if (sb.st_size > content_size) {
            ci = sdsgrowzero(ci,sb.st_size);
            memset(ci+content_size,'\n',sb.st_size-content_size);
        }
    }
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    if (write(fd,ci,sdslen(ci)) != (ssize_t)sdslen(ci)) goto err;
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    if (do_fsync) fsync(fd);
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    /* Truncate the file if needed to remove the final \n padding that
     * is just garbage. */
    if (content_size != sdslen(ci) && ftruncate(fd,content_size) == -1) {
        /* ftruncate() failing is not a critical error. */
    }
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    close(fd);
    sdsfree(ci);
    return 0;

err:
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    if (fd != -1) close(fd);
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    sdsfree(ci);
    return -1;
}

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void clusterSaveConfigOrDie(int do_fsync) {
    if (clusterSaveConfig(do_fsync) == -1) {
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        redisLog(REDIS_WARNING,"Fatal: can't update cluster config file.");
        exit(1);
    }
}

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void clusterInit(void) {
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    int saveconf = 0;
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    server.cluster = zmalloc(sizeof(clusterState));
    server.cluster->myself = NULL;
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    server.cluster->currentEpoch = 0;
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    server.cluster->state = REDIS_CLUSTER_FAIL;
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    server.cluster->size = 1;
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    server.cluster->todo_before_sleep = 0;
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    server.cluster->nodes = dictCreate(&clusterNodesDictType,NULL);
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    server.cluster->nodes_black_list =
        dictCreate(&clusterNodesBlackListDictType,NULL);
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    server.cluster->failover_auth_time = 0;
    server.cluster->failover_auth_count = 0;
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    server.cluster->failover_auth_epoch = 0;
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    server.cluster->last_vote_epoch = 0;
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    server.cluster->stats_bus_messages_sent = 0;
    server.cluster->stats_bus_messages_received = 0;
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    memset(server.cluster->migrating_slots_to,0,
        sizeof(server.cluster->migrating_slots_to));
    memset(server.cluster->importing_slots_from,0,
        sizeof(server.cluster->importing_slots_from));
    memset(server.cluster->slots,0,
        sizeof(server.cluster->slots));
    if (clusterLoadConfig(server.cluster_configfile) == REDIS_ERR) {
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        /* No configuration found. We will just use the random name provided
         * by the createClusterNode() function. */
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        myself = server.cluster->myself =
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            createClusterNode(NULL,REDIS_NODE_MYSELF|REDIS_NODE_MASTER);
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        redisLog(REDIS_NOTICE,"No cluster configuration found, I'm %.40s",
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            myself->name);
        clusterAddNode(myself);
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        saveconf = 1;
    }
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    if (saveconf) clusterSaveConfigOrDie(1);
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    /* We need a listening TCP port for our cluster messaging needs. */
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    server.cfd_count = 0;
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    if (listenToPort(server.port+REDIS_CLUSTER_PORT_INCR,
        server.cfd,&server.cfd_count) == REDIS_ERR)
    {
        exit(1);
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    } else {
        int j;

        for (j = 0; j < server.cfd_count; j++) {
            if (aeCreateFileEvent(server.el, server.cfd[j], AE_READABLE,
                clusterAcceptHandler, NULL) == AE_ERR)
                    redisPanic("Unrecoverable error creating Redis Cluster "
                                "file event.");
        }
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    }
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    /* The slots -> keys map is a sorted set. Init it. */
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    server.cluster->slots_to_keys = zslCreate();
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}

/* -----------------------------------------------------------------------------
 * CLUSTER communication link
 * -------------------------------------------------------------------------- */

clusterLink *createClusterLink(clusterNode *node) {
    clusterLink *link = zmalloc(sizeof(*link));
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    link->ctime = mstime();
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    link->sndbuf = sdsempty();
    link->rcvbuf = sdsempty();
    link->node = node;
    link->fd = -1;
    return link;
}

/* Free a cluster link, but does not free the associated node of course.
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 * This function will just make sure that the original node associated
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 * with this link will have the 'link' field set to NULL. */
void freeClusterLink(clusterLink *link) {
    if (link->fd != -1) {
        aeDeleteFileEvent(server.el, link->fd, AE_WRITABLE);
        aeDeleteFileEvent(server.el, link->fd, AE_READABLE);
    }
    sdsfree(link->sndbuf);
    sdsfree(link->rcvbuf);
    if (link->node)
        link->node->link = NULL;
    close(link->fd);
    zfree(link);
}

void clusterAcceptHandler(aeEventLoop *el, int fd, void *privdata, int mask) {
    int cport, cfd;
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    char cip[REDIS_IP_STR_LEN];
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    clusterLink *link;
    REDIS_NOTUSED(el);
    REDIS_NOTUSED(mask);
    REDIS_NOTUSED(privdata);

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    cfd = anetTcpAccept(server.neterr, fd, cip, sizeof(cip), &cport);
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    if (cfd == AE_ERR) {
        redisLog(REDIS_VERBOSE,"Accepting cluster node: %s", server.neterr);
        return;
    }
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    anetNonBlock(NULL,cfd);
    anetEnableTcpNoDelay(NULL,cfd);

    /* Use non-blocking I/O for cluster messages. */
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    /* IPV6: might want to wrap a v6 address in [] */
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    redisLog(REDIS_VERBOSE,"Accepted cluster node %s:%d", cip, cport);
    /* We need to create a temporary node in order to read the incoming
     * packet in a valid contest. This node will be released once we
     * read the packet and reply. */
    link = createClusterLink(NULL);
    link->fd = cfd;
    aeCreateFileEvent(server.el,cfd,AE_READABLE,clusterReadHandler,link);
}

/* -----------------------------------------------------------------------------
 * Key space handling
 * -------------------------------------------------------------------------- */

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/* We have 16384 hash slots. The hash slot of a given key is obtained
 * as the least significant 14 bits of the crc16 of the key. */
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unsigned int keyHashSlot(char *key, int keylen) {
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    return crc16(key,keylen) & 0x3FFF;
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}

/* -----------------------------------------------------------------------------
 * CLUSTER node API
 * -------------------------------------------------------------------------- */

/* Create a new cluster node, with the specified flags.
 * If "nodename" is NULL this is considered a first handshake and a random
 * node name is assigned to this node (it will be fixed later when we'll
 * receive the first pong).
 *
 * The node is created and returned to the user, but it is not automatically
 * added to the nodes hash table. */
clusterNode *createClusterNode(char *nodename, int flags) {
    clusterNode *node = zmalloc(sizeof(*node));

    if (nodename)
        memcpy(node->name, nodename, REDIS_CLUSTER_NAMELEN);
    else
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        getRandomHexChars(node->name, REDIS_CLUSTER_NAMELEN);
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    node->ctime = mstime();
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    node->configEpoch = 0;
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    node->flags = flags;
    memset(node->slots,0,sizeof(node->slots));
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    node->numslots = 0;
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    node->numslaves = 0;
    node->slaves = NULL;
    node->slaveof = NULL;
    node->ping_sent = node->pong_received = 0;
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    node->fail_time = 0;
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    node->link = NULL;
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    memset(node->ip,0,sizeof(node->ip));
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    node->port = 0;
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    node->fail_reports = listCreate();
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    node->voted_time = 0;
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    node->repl_offset_time = 0;
    node->repl_offset = 0;
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    listSetFreeMethod(node->fail_reports,zfree);
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    return node;
}

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/* This function is called every time we get a failure report from a node.
 * The side effect is to populate the fail_reports list (or to update
 * the timestamp of an existing report).
 *
 * 'failing' is the node that is in failure state according to the
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 * 'sender' node.
 *
 * The function returns 0 if it just updates a timestamp of an existing
 * failure report from the same sender. 1 is returned if a new failure
 * report is created. */
int clusterNodeAddFailureReport(clusterNode *failing, clusterNode *sender) {
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    list *l = failing->fail_reports;
    listNode *ln;
    listIter li;
    clusterNodeFailReport *fr;

    /* If a failure report from the same sender already exists, just update
     * the timestamp. */
    listRewind(l,&li);
    while ((ln = listNext(&li)) != NULL) {
        fr = ln->value;
        if (fr->node == sender) {
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            fr->time = mstime();
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            return 0;
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        }
    }

    /* Otherwise create a new report. */
    fr = zmalloc(sizeof(*fr));
    fr->node = sender;
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    fr->time = mstime();
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    listAddNodeTail(l,fr);
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    return 1;
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}

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/* Remove failure reports that are too old, where too old means reasonably
 * older than the global node timeout. Note that anyway for a node to be
 * flagged as FAIL we need to have a local PFAIL state that is at least
 * older than the global node timeout, so we don't just trust the number
 * of failure reports from other nodes. */
void clusterNodeCleanupFailureReports(clusterNode *node) {
    list *l = node->fail_reports;
    listNode *ln;
    listIter li;
    clusterNodeFailReport *fr;
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    mstime_t maxtime = server.cluster_node_timeout *
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                     REDIS_CLUSTER_FAIL_REPORT_VALIDITY_MULT;
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    mstime_t now = mstime();
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    listRewind(l,&li);
    while ((ln = listNext(&li)) != NULL) {
        fr = ln->value;
        if (now - fr->time > maxtime) listDelNode(l,ln);
    }
}

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/* Remove the failing report for 'node' if it was previously considered
 * failing by 'sender'. This function is called when a node informs us via
 * gossip that a node is OK from its point of view (no FAIL or PFAIL flags).
 *
 * Note that this function is called relatively often as it gets called even
 * when there are no nodes failing, and is O(N), however when the cluster is
 * fine the failure reports list is empty so the function runs in constant
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 * time.
 *
 * The function returns 1 if the failure report was found and removed.
 * Otherwise 0 is returned. */
int clusterNodeDelFailureReport(clusterNode *node, clusterNode *sender) {
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    list *l = node->fail_reports;
    listNode *ln;
    listIter li;
    clusterNodeFailReport *fr;

    /* Search for a failure report from this sender. */
    listRewind(l,&li);
    while ((ln = listNext(&li)) != NULL) {
        fr = ln->value;
        if (fr->node == sender) break;
    }
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    if (!ln) return 0; /* No failure report from this sender. */
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    /* Remove the failure report. */
    listDelNode(l,ln);
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    clusterNodeCleanupFailureReports(node);
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    return 1;
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}

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/* Return the number of external nodes that believe 'node' is failing,
 * not including this node, that may have a PFAIL or FAIL state for this
 * node as well. */
int clusterNodeFailureReportsCount(clusterNode *node) {
    clusterNodeCleanupFailureReports(node);
    return listLength(node->fail_reports);
}

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int clusterNodeRemoveSlave(clusterNode *master, clusterNode *slave) {
    int j;

    for (j = 0; j < master->numslaves; j++) {
        if (master->slaves[j] == slave) {
            memmove(master->slaves+j,master->slaves+(j+1),
                (master->numslaves-1)-j);
            master->numslaves--;
            return REDIS_OK;
        }
    }
    return REDIS_ERR;
}

int clusterNodeAddSlave(clusterNode *master, clusterNode *slave) {
    int j;

    /* If it's already a slave, don't add it again. */
    for (j = 0; j < master->numslaves; j++)
        if (master->slaves[j] == slave) return REDIS_ERR;
    master->slaves = zrealloc(master->slaves,
        sizeof(clusterNode*)*(master->numslaves+1));
    master->slaves[master->numslaves] = slave;
    master->numslaves++;
    return REDIS_OK;
}

void clusterNodeResetSlaves(clusterNode *n) {
    zfree(n->slaves);
    n->numslaves = 0;
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    n->slaves = NULL;
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}

void freeClusterNode(clusterNode *n) {
    sds nodename;
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    nodename = sdsnewlen(n->name, REDIS_CLUSTER_NAMELEN);
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    redisAssert(dictDelete(server.cluster->nodes,nodename) == DICT_OK);
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    sdsfree(nodename);
    if (n->slaveof) clusterNodeRemoveSlave(n->slaveof, n);
    if (n->link) freeClusterLink(n->link);
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    listRelease(n->fail_reports);
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    zfree(n);
}

/* Add a node to the nodes hash table */
int clusterAddNode(clusterNode *node) {
    int retval;
    
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    retval = dictAdd(server.cluster->nodes,
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            sdsnewlen(node->name,REDIS_CLUSTER_NAMELEN), node);
    return (retval == DICT_OK) ? REDIS_OK : REDIS_ERR;
}

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/* Remove a node from the cluster:
 * 1) Mark all the nodes handled by it as unassigned.
 * 2) Remove all the failure reports sent by this node.
 * 3) Free the node, that will in turn remove it from the hash table
 *    and from the list of slaves of its master, if it is a slave node.
 */
void clusterDelNode(clusterNode *delnode) {
    int j;
    dictIterator *di;
    dictEntry *de;

    /* 1) Mark slots as unassigned. */
    for (j = 0; j < REDIS_CLUSTER_SLOTS; j++) {
        if (server.cluster->importing_slots_from[j] == delnode)
            server.cluster->importing_slots_from[j] = NULL;
        if (server.cluster->migrating_slots_to[j] == delnode)
            server.cluster->migrating_slots_to[j] = NULL;
        if (server.cluster->slots[j] == delnode)
            clusterDelSlot(j);
    }

    /* 2) Remove failure reports. */
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    di = dictGetSafeIterator(server.cluster->nodes);
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    while((de = dictNext(di)) != NULL) {
        clusterNode *node = dictGetVal(de);

        if (node == delnode) continue;
        clusterNodeDelFailureReport(node,delnode);
    }
    dictReleaseIterator(di);

    /* 3) Free the node, unlinking it from the cluster. */
    freeClusterNode(delnode);
}

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/* Node lookup by name */
clusterNode *clusterLookupNode(char *name) {
    sds s = sdsnewlen(name, REDIS_CLUSTER_NAMELEN);
    struct dictEntry *de;

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    de = dictFind(server.cluster->nodes,s);
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    sdsfree(s);
    if (de == NULL) return NULL;
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    return dictGetVal(de);
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}

/* This is only used after the handshake. When we connect a given IP/PORT
 * as a result of CLUSTER MEET we don't have the node name yet, so we
 * pick a random one, and will fix it when we receive the PONG request using
 * this function. */
void clusterRenameNode(clusterNode *node, char *newname) {
    int retval;
    sds s = sdsnewlen(node->name, REDIS_CLUSTER_NAMELEN);
   
    redisLog(REDIS_DEBUG,"Renaming node %.40s into %.40s",
        node->name, newname);
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    retval = dictDelete(server.cluster->nodes, s);
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    sdsfree(s);
    redisAssert(retval == DICT_OK);
    memcpy(node->name, newname, REDIS_CLUSTER_NAMELEN);
    clusterAddNode(node);
}

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/* -----------------------------------------------------------------------------
 * CLUSTER nodes blacklist
 *
 * The nodes blacklist is just a way to ensure that a given node with a given
 * Node ID is not readded before some time elapsed (this time is specified
 * in seconds in REDIS_CLUSTER_BLACKLIST_TTL).
 *
 * This is useful when we want to remove a node from the cluster completely:
 * when CLUSTER FORGET is called, it also puts the node into the blacklist so
 * that even if we receive gossip messages from other nodes that still remember
 * about the node we want to remove, we don't re-add it before some time.
 *
 * Currently the REDIS_CLUSTER_BLACKLIST_TTL is set to 1 minute, this means
 * that redis-trib has 60 seconds to send CLUSTER FORGET messages to nodes
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 * in the cluster without dealing with the problem of other nodes re-adding
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 * back the node to nodes we already sent the FORGET command to.
 *
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 * The data structure used is a hash table with an sds string representing
683 684 685 686 687 688 689 690 691 692 693 694 695 696 697 698 699 700 701 702 703 704 705 706 707 708 709 710 711 712 713 714 715
 * the node ID as key, and the time when it is ok to re-add the node as
 * value.
 * -------------------------------------------------------------------------- */

#define REDIS_CLUSTER_BLACKLIST_TTL 60      /* 1 minute. */


/* Before of the addNode() or Exists() operations we always remove expired
 * entries from the black list. This is an O(N) operation but it is not a
 * problem since add / exists operations are called very infrequently and
 * the hash table is supposed to contain very little elements at max.
 * However without the cleanup during long uptimes and with some automated
 * node add/removal procedures, entries could accumulate. */
void clusterBlacklistCleanup(void) {
    dictIterator *di;
    dictEntry *de;

    di = dictGetSafeIterator(server.cluster->nodes_black_list);
    while((de = dictNext(di)) != NULL) {
        int64_t expire = dictGetUnsignedIntegerVal(de);

        if (expire < server.unixtime)
            dictDelete(server.cluster->nodes_black_list,dictGetKey(de));
    }
    dictReleaseIterator(di);
}

/* Cleanup the blacklist and add a new node ID to the black list. */
void clusterBlacklistAddNode(clusterNode *node) {
    dictEntry *de;
    sds id = sdsnewlen(node->name,REDIS_CLUSTER_NAMELEN);

    clusterBlacklistCleanup();
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    if (dictAdd(server.cluster->nodes_black_list,id,NULL) == DICT_OK) {
        /* If the key was added, duplicate the sds string representation of
         * the key for the next lookup. We'll free it at the end. */
        id = sdsdup(id);
    }
    de = dictFind(server.cluster->nodes_black_list,id);
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    dictSetUnsignedIntegerVal(de,time(NULL)+REDIS_CLUSTER_BLACKLIST_TTL);
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    sdsfree(id);
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}

/* Return non-zero if the specified node ID exists in the blacklist.
 * You don't need to pass an sds string here, any pointer to 40 bytes
 * will work. */
int clusterBlacklistExists(char *nodeid) {
    sds id = sdsnewlen(nodeid,REDIS_CLUSTER_NAMELEN);
    int retval;

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    clusterBlacklistCleanup();
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    retval = dictFind(server.cluster->nodes_black_list,id) != NULL;
    sdsfree(id);
    return retval;
}

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/* -----------------------------------------------------------------------------
 * CLUSTER messages exchange - PING/PONG and gossip
 * -------------------------------------------------------------------------- */

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/* This function checks if a given node should be marked as FAIL.
 * It happens if the following conditions are met:
 *
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 * 1) We received enough failure reports from other master nodes via gossip.
 *    Enough means that the majority of the masters signaled the node is
 *    down recently.
 * 2) We believe this node is in PFAIL state.
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 *
 * If a failure is detected we also inform the whole cluster about this
 * event trying to force every other node to set the FAIL flag for the node.
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 *
 * Note that the form of agreement used here is weak, as we collect the majority
 * of masters state during some time, and even if we force agreement by
 * propagating the FAIL message, because of partitions we may not reach every
 * node. However:
 *
 * 1) Either we reach the majority and eventually the FAIL state will propagate
 *    to all the cluster.
 * 2) Or there is no majority so no slave promotion will be authorized and the
 *    FAIL flag will be cleared after some time.
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 */
void markNodeAsFailingIfNeeded(clusterNode *node) {
    int failures;
    int needed_quorum = (server.cluster->size / 2) + 1;

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    if (!nodeTimedOut(node)) return; /* We can reach it. */
    if (nodeFailed(node)) return; /* Already FAILing. */
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    failures = clusterNodeFailureReportsCount(node);
    /* Also count myself as a voter if I'm a master. */
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    if (nodeIsMaster(myself)) failures++;
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    if (failures < needed_quorum) return; /* No weak agreement from masters. */
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    redisLog(REDIS_NOTICE,
        "Marking node %.40s as failing (quorum reached).", node->name);

    /* Mark the node as failing. */
    node->flags &= ~REDIS_NODE_PFAIL;
    node->flags |= REDIS_NODE_FAIL;
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    node->fail_time = mstime();
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    /* Broadcast the failing node name to everybody, forcing all the other
     * reachable nodes to flag the node as FAIL. */
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    if (nodeIsMaster(myself)) clusterSendFail(node->name);
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    clusterDoBeforeSleep(CLUSTER_TODO_UPDATE_STATE|CLUSTER_TODO_SAVE_CONFIG);
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}

/* This function is called only if a node is marked as FAIL, but we are able
 * to reach it again. It checks if there are the conditions to undo the FAIL
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 * state. */
793
void clearNodeFailureIfNeeded(clusterNode *node) {
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    mstime_t now = mstime();
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    redisAssert(nodeFailed(node));
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    /* For slaves we always clear the FAIL flag if we can contact the
     * node again. */
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    if (nodeIsSlave(node)) {
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        redisLog(REDIS_NOTICE,
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            "Clear FAIL state for node %.40s: slave is reachable again.",
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                node->name);
        node->flags &= ~REDIS_NODE_FAIL;
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        clusterDoBeforeSleep(CLUSTER_TODO_UPDATE_STATE|CLUSTER_TODO_SAVE_CONFIG);
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    }

    /* If it is a master and...
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     * 1) The FAIL state is old enough.
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     * 2) It is yet serving slots from our point of view (not failed over).
     * Apparently no one is going to fix these slots, clear the FAIL flag. */
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    if (nodeIsMaster(node) && node->numslots > 0 &&
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        (now - node->fail_time) >
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        (server.cluster_node_timeout * REDIS_CLUSTER_FAIL_UNDO_TIME_MULT))
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    {
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        redisLog(REDIS_NOTICE,
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            "Clear FAIL state for node %.40s: is reachable again and nobody is serving its slots after some time.",
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                node->name);
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        node->flags &= ~REDIS_NODE_FAIL;
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        clusterDoBeforeSleep(CLUSTER_TODO_UPDATE_STATE|CLUSTER_TODO_SAVE_CONFIG);
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    }
}

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/* Return true if we already have a node in HANDSHAKE state matching the
 * specified ip address and port number. This function is used in order to
 * avoid adding a new handshake node for the same address multiple times. */
int clusterHandshakeInProgress(char *ip, int port) {
    dictIterator *di;
    dictEntry *de;

    di = dictGetSafeIterator(server.cluster->nodes);
    while((de = dictNext(di)) != NULL) {
        clusterNode *node = dictGetVal(de);

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        if (!nodeInHandshake(node)) continue;
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        if (!strcasecmp(node->ip,ip) && node->port == port) break;
    }
    dictReleaseIterator(di);
    return de != NULL;
}

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/* Start an handshake with the specified address if there is not one
 * already in progress. Returns non-zero if the handshake was actually
 * started. On error zero is returned and errno is set to one of the
 * following values:
 *
 * EAGAIN - There is already an handshake in progress for this address.
 * EINVAL - IP or port are not valid. */
int clusterStartHandshake(char *ip, int port) {
    clusterNode *n;
    char norm_ip[REDIS_IP_STR_LEN];
    struct sockaddr_storage sa;

    /* IP sanity check */
    if (inet_pton(AF_INET,ip,
            &(((struct sockaddr_in *)&sa)->sin_addr)))
    {
        sa.ss_family = AF_INET;
    } else if (inet_pton(AF_INET6,ip,
            &(((struct sockaddr_in6 *)&sa)->sin6_addr)))
    {
        sa.ss_family = AF_INET6;
    } else {
        errno = EINVAL;
        return 0;
    }

    /* Port sanity check */
    if (port <= 0 || port > (65535-REDIS_CLUSTER_PORT_INCR)) {
        errno = EINVAL;
        return 0;
    }

    /* Set norm_ip as the normalized string representation of the node
     * IP address. */
    if (sa.ss_family == AF_INET)
        inet_ntop(AF_INET,
            (void*)&(((struct sockaddr_in *)&sa)->sin_addr),
            norm_ip,REDIS_CLUSTER_IPLEN);
    else
        inet_ntop(AF_INET6,
            (void*)&(((struct sockaddr_in6 *)&sa)->sin6_addr),
            norm_ip,REDIS_CLUSTER_IPLEN);

    if (clusterHandshakeInProgress(norm_ip,port)) {
        errno = EAGAIN;
        return 0;
    }

    /* Add the node with a random address (NULL as first argument to
     * createClusterNode()). Everything will be fixed during the
     * handskake. */
    n = createClusterNode(NULL,REDIS_NODE_HANDSHAKE|REDIS_NODE_MEET);
    memcpy(n->ip,norm_ip,sizeof(n->ip));
    n->port = port;
    clusterAddNode(n);
    return 1;
}

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/* Process the gossip section of PING or PONG packets.
 * Note that this function assumes that the packet is already sanity-checked
 * by the caller, not in the content of the gossip section, but in the
 * length. */
void clusterProcessGossipSection(clusterMsg *hdr, clusterLink *link) {
    uint16_t count = ntohs(hdr->count);
    clusterMsgDataGossip *g = (clusterMsgDataGossip*) hdr->data.ping.gossip;
    clusterNode *sender = link->node ? link->node : clusterLookupNode(hdr->sender);

    while(count--) {
        sds ci = sdsempty();
        uint16_t flags = ntohs(g->flags);
        clusterNode *node;

        if (flags == 0) ci = sdscat(ci,"noflags,");
        if (flags & REDIS_NODE_MYSELF) ci = sdscat(ci,"myself,");
        if (flags & REDIS_NODE_MASTER) ci = sdscat(ci,"master,");
        if (flags & REDIS_NODE_SLAVE) ci = sdscat(ci,"slave,");
        if (flags & REDIS_NODE_PFAIL) ci = sdscat(ci,"fail?,");
        if (flags & REDIS_NODE_FAIL) ci = sdscat(ci,"fail,");
        if (flags & REDIS_NODE_HANDSHAKE) ci = sdscat(ci,"handshake,");
        if (flags & REDIS_NODE_NOADDR) ci = sdscat(ci,"noaddr,");
        if (ci[sdslen(ci)-1] == ',') ci[sdslen(ci)-1] = ' ';

        redisLog(REDIS_DEBUG,"GOSSIP %.40s %s:%d %s",
            g->nodename,
            g->ip,
            ntohs(g->port),
            ci);
        sdsfree(ci);

        /* Update our state accordingly to the gossip sections */
        node = clusterLookupNode(g->nodename);
933
        if (node) {
934 935
            /* We already know this node.
               Handle failure reports, only when the sender is a master. */
936
            if (sender && nodeIsMaster(sender) && node != myself) {
937 938
                if (flags & (REDIS_NODE_FAIL|REDIS_NODE_PFAIL)) {
                    if (clusterNodeAddFailureReport(node,sender)) {
939
                        redisLog(REDIS_VERBOSE,
940 941 942 943 944 945
                            "Node %.40s reported node %.40s as not reachable.",
                            sender->name, node->name);
                    }
                    markNodeAsFailingIfNeeded(node);
                } else {
                    if (clusterNodeDelFailureReport(node,sender)) {
946
                        redisLog(REDIS_VERBOSE,
947 948 949 950
                            "Node %.40s reported node %.40s is back online.",
                            sender->name, node->name);
                    }
                }
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            }
952 953 954 955 956 957 958 959 960 961 962

            /* If we already know this node, but it is not reachable, and
             * we see a different address in the gossip section, start an
             * handshake with the (possibly) new address: this will result
             * into a node address update if the handshake will be
             * successful. */
            if (node->flags & (REDIS_NODE_FAIL|REDIS_NODE_PFAIL) &&
                (strcasecmp(node->ip,g->ip) || node->port != ntohs(g->port)))
            {
                clusterStartHandshake(g->ip,ntohs(g->port));
            }
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        } else {
            /* If it's not in NOADDR state and we don't have it, we
965
             * start a handshake process against this IP/PORT pairs.
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             *
             * Note that we require that the sender of this gossip message
             * is a well known node in our cluster, otherwise we risk
             * joining another cluster. */
970 971 972 973
            if (sender &&
                !(flags & REDIS_NODE_NOADDR) &&
                !clusterBlacklistExists(g->nodename))
            {
974
                clusterStartHandshake(g->ip,ntohs(g->port));
975
            }
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        }

        /* Next node */
        g++;
    }
}

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/* IP -> string conversion. 'buf' is supposed to at least be 46 bytes. */
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void nodeIp2String(char *buf, clusterLink *link) {
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    struct sockaddr_storage sa;
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    socklen_t salen = sizeof(sa);

    if (getpeername(link->fd, (struct sockaddr*) &sa, &salen) == -1)
        redisPanic("getpeername() failed.");
990 991 992 993 994 995 996 997

    if (sa.ss_family == AF_INET) {
        struct sockaddr_in *s = (struct sockaddr_in *)&sa;
        inet_ntop(AF_INET,(void*)&(s->sin_addr),buf,REDIS_CLUSTER_IPLEN);
    } else {
        struct sockaddr_in6 *s = (struct sockaddr_in6 *)&sa;
        inet_ntop(AF_INET6,(void*)&(s->sin6_addr),buf,REDIS_CLUSTER_IPLEN);
    }
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}


/* Update the node address to the IP address that can be extracted
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 * from link->fd, and at the specified port.
 * Also disconnect the node link so that we'll connect again to the new
 * address.
 *
 * If the ip/port pair are already correct no operation is performed at
 * all.
 *
 * The function returns 0 if the node address is still the same,
 * otherwise 1 is returned. */
int nodeUpdateAddressIfNeeded(clusterNode *node, clusterLink *link, int port) {
    char ip[REDIS_IP_STR_LEN];

    /* We don't proceed if the link is the same as the sender link, as this
     * function is designed to see if the node link is consistent with the
     * symmetric link that is used to receive PINGs from the node.
     *
     * As a side effect this function never frees the passed 'link', so
     * it is safe to call during packet processing. */
    if (link == node->link) return 0;

    nodeIp2String(ip,link);
    if (node->port == port && strcmp(ip,node->ip) == 0) return 0;

    /* IP / port is different, update it. */
    memcpy(node->ip,ip,sizeof(ip));
    node->port = port;
    if (node->link) freeClusterLink(node->link);
    redisLog(REDIS_WARNING,"Address updated for node %.40s, now %s:%d",
        node->name, node->ip, node->port);
1031 1032 1033

    /* Check if this is our master and we have to change the
     * replication target as well. */
1034
    if (nodeIsSlave(myself) && myself->slaveof == node)
1035
        replicationSetMaster(node->ip, node->port);
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    return 1;
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}

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/* Reconfigure the specified node 'n' as a master. This function is called when
 * a node that we believed to be a slave is now acting as master in order to
 * update the state of the node. */
void clusterSetNodeAsMaster(clusterNode *n) {
1043
    if (nodeIsMaster(n)) return;
1044 1045 1046 1047 1048 1049 1050 1051 1052 1053 1054 1055 1056 1057 1058 1059 1060 1061 1062 1063 1064 1065 1066 1067 1068 1069 1070 1071 1072 1073 1074

    if (n->slaveof) clusterNodeRemoveSlave(n->slaveof,n);
    n->flags &= ~REDIS_NODE_SLAVE;
    n->flags |= REDIS_NODE_MASTER;
    n->slaveof = NULL;

    /* Update config and state. */
    clusterDoBeforeSleep(CLUSTER_TODO_SAVE_CONFIG|
                         CLUSTER_TODO_UPDATE_STATE);
}

/* This function is called when we receive a master configuration via a
 * PING, PONG or UPDATE packet. What we receive is a node, a configEpoch of the
 * node, and the set of slots claimed under this configEpoch.
 *
 * What we do is to rebind the slots with newer configuration compared to our
 * local configuration, and if needed, we turn ourself into a replica of the
 * node (see the function comments for more info).
 *
 * The 'sender' is the node for which we received a configuration update.
 * Sometimes it is not actaully the "Sender" of the information, like in the case
 * we receive the info via an UPDATE packet. */
void clusterUpdateSlotsConfigWith(clusterNode *sender, uint64_t senderConfigEpoch,
                                  unsigned char *slots)
{
    int j;
    clusterNode *curmaster, *newmaster = NULL;

    /* Here we set curmaster to this node or the node this node
     * replicates to if it's a slave. In the for loop we are
     * interested to check if slots are taken away from curmaster. */
1075
    curmaster = nodeIsMaster(myself) ? myself : myself->slaveof;
1076 1077 1078 1079 1080 1081 1082 1083 1084 1085 1086 1087 1088 1089 1090 1091 1092 1093 1094 1095 1096 1097 1098 1099 1100 1101 1102 1103 1104 1105 1106 1107 1108 1109 1110 1111 1112 1113

    for (j = 0; j < REDIS_CLUSTER_SLOTS; j++) {
        if (bitmapTestBit(slots,j)) {
            /* We rebind the slot to the new node claiming it if:
             * 1) The slot was unassigned.
             * 2) The new node claims it with a greater configEpoch. */
            if (server.cluster->slots[j] == sender) continue;
            if (server.cluster->slots[j] == NULL ||
                server.cluster->slots[j]->configEpoch <
                senderConfigEpoch)
            {
                if (server.cluster->slots[j] == curmaster)
                    newmaster = sender;
                clusterDelSlot(j);
                clusterAddSlot(sender,j);
                clusterDoBeforeSleep(CLUSTER_TODO_SAVE_CONFIG|
                                     CLUSTER_TODO_UPDATE_STATE|
                                     CLUSTER_TODO_FSYNC_CONFIG);
            }
        }
    }

    /* If at least one slot was reassigned from a node to another node
     * with a greater configEpoch, it is possible that:
     * 1) We are a master left without slots. This means that we were
     *    failed over and we should turn into a replica of the new
     *    master.
     * 2) We are a slave and our master is left without slots. We need
     *    to replicate to the new slots owner. */
    if (newmaster && curmaster->numslots == 0) {
        redisLog(REDIS_WARNING,"Configuration change detected. Reconfiguring myself as a replica of %.40s", sender->name);
        clusterSetMaster(sender);
        clusterDoBeforeSleep(CLUSTER_TODO_SAVE_CONFIG|
                             CLUSTER_TODO_UPDATE_STATE|
                             CLUSTER_TODO_FSYNC_CONFIG);
    }
}

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/* When this function is called, there is a packet to process starting
 * at node->rcvbuf. Releasing the buffer is up to the caller, so this
 * function should just handle the higher level stuff of processing the
 * packet, modifying the cluster state if needed.
 *
 * The function returns 1 if the link is still valid after the packet
 * was processed, otherwise 0 if the link was freed since the packet
 * processing lead to some inconsistency error (for instance a PONG
 * received from the wrong sender ID). */
int clusterProcessPacket(clusterLink *link) {
    clusterMsg *hdr = (clusterMsg*) link->rcvbuf;
    uint32_t totlen = ntohl(hdr->totlen);
    uint16_t type = ntohs(hdr->type);
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    uint16_t flags = ntohs(hdr->flags);
1128
    uint64_t senderCurrentEpoch = 0, senderConfigEpoch = 0;
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    clusterNode *sender;

1131
    server.cluster->stats_bus_messages_received++;
1132 1133
    redisLog(REDIS_DEBUG,"--- Processing packet of type %d, %lu bytes",
        type, (unsigned long) totlen);
1134 1135

    /* Perform sanity checks */
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    if (totlen < 8) return 1;
    if (totlen > sdslen(link->rcvbuf)) return 1;
    if (type == CLUSTERMSG_TYPE_PING || type == CLUSTERMSG_TYPE_PONG ||
        type == CLUSTERMSG_TYPE_MEET)
    {
        uint16_t count = ntohs(hdr->count);
        uint32_t explen; /* expected length of this packet */

        explen = sizeof(clusterMsg)-sizeof(union clusterMsgData);
        explen += (sizeof(clusterMsgDataGossip)*count);
        if (totlen != explen) return 1;
1147
    } else if (type == CLUSTERMSG_TYPE_FAIL) {
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        uint32_t explen = sizeof(clusterMsg)-sizeof(union clusterMsgData);

        explen += sizeof(clusterMsgDataFail);
        if (totlen != explen) return 1;
1152
    } else if (type == CLUSTERMSG_TYPE_PUBLISH) {
1153 1154 1155 1156 1157 1158
        uint32_t explen = sizeof(clusterMsg)-sizeof(union clusterMsgData);

        explen += sizeof(clusterMsgDataPublish) +
                ntohl(hdr->data.publish.msg.channel_len) +
                ntohl(hdr->data.publish.msg.message_len);
        if (totlen != explen) return 1;
1159 1160
    } else if (type == CLUSTERMSG_TYPE_FAILOVER_AUTH_REQUEST ||
               type == CLUSTERMSG_TYPE_FAILOVER_AUTH_ACK) {
1161 1162
        uint32_t explen = sizeof(clusterMsg)-sizeof(union clusterMsgData);

1163 1164 1165 1166 1167
        if (totlen != explen) return 1;
    } else if (type == CLUSTERMSG_TYPE_UPDATE) {
        uint32_t explen = sizeof(clusterMsg)-sizeof(union clusterMsgData);

        explen += sizeof(clusterMsgDataUpdate);
1168
        if (totlen != explen) return 1;
1169
    }
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1171
    /* Check if the sender is a known node. */
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    sender = clusterLookupNode(hdr->sender);
1173
    if (sender && !nodeInHandshake(sender)) {
1174
        /* Update our curretEpoch if we see a newer epoch in the cluster. */
1175 1176 1177 1178
        senderCurrentEpoch = ntohu64(hdr->currentEpoch);
        senderConfigEpoch = ntohu64(hdr->configEpoch);
        if (senderCurrentEpoch > server.cluster->currentEpoch)
            server.cluster->currentEpoch = senderCurrentEpoch;
1179
        /* Update the sender configEpoch if it is publishing a newer one. */
1180
        if (senderConfigEpoch > sender->configEpoch) {
1181
            sender->configEpoch = senderConfigEpoch;
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            clusterDoBeforeSleep(CLUSTER_TODO_SAVE_CONFIG|CLUSTER_TODO_FSYNC_CONFIG);
1183
        }
1184 1185 1186
        /* Update the replication offset info for this node. */
        sender->repl_offset = ntohu64(hdr->offset);
        sender->repl_offset_time = mstime();
1187
    }
1188

1189
    /* Process packets by type. */
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1190
    if (type == CLUSTERMSG_TYPE_PING || type == CLUSTERMSG_TYPE_MEET) {
1191
        redisLog(REDIS_DEBUG,"Ping packet received: %p", (void*)link->node);
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        /* Add this node if it is new for us and the msg type is MEET.
         * In this stage we don't try to add the node with the right
         * flags, slaveof pointer, and so forth, as this details will be
1196
         * resolved when we'll receive PONGs from the node. */
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        if (!sender && type == CLUSTERMSG_TYPE_MEET) {
            clusterNode *node;

            node = createClusterNode(NULL,REDIS_NODE_HANDSHAKE);
            nodeIp2String(node->ip,link);
            node->port = ntohs(hdr->port);
            clusterAddNode(node);
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            clusterDoBeforeSleep(CLUSTER_TODO_SAVE_CONFIG);
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        }

        /* Get info from the gossip section */
        clusterProcessGossipSection(hdr,link);

        /* Anyway reply with a PONG */
        clusterSendPing(link,CLUSTERMSG_TYPE_PONG);
1212 1213 1214
    }

    /* PING or PONG: process config information. */
1215 1216 1217
    if (type == CLUSTERMSG_TYPE_PING || type == CLUSTERMSG_TYPE_PONG ||
        type == CLUSTERMSG_TYPE_MEET)
    {
1218 1219 1220
        redisLog(REDIS_DEBUG,"%s packet received: %p",
            type == CLUSTERMSG_TYPE_PING ? "ping" : "pong",
            (void*)link->node);
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        if (link->node) {
1222
            if (nodeInHandshake(link->node)) {
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                /* If we already have this node, try to change the
                 * IP/port of the node with the new one. */
                if (sender) {
                    redisLog(REDIS_WARNING,
                        "Handshake error: we already know node %.40s, updating the address if needed.", sender->name);
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                    if (nodeUpdateAddressIfNeeded(sender,link,ntohs(hdr->port)))
                    {
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                        clusterDoBeforeSleep(CLUSTER_TODO_SAVE_CONFIG|
                                             CLUSTER_TODO_UPDATE_STATE);
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1232 1233 1234 1235
                    }
                    /* Free this node as we alrady have it. This will
                     * cause the link to be freed as well. */
                    freeClusterNode(link->node);
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                    return 0;
                }

                /* First thing to do is replacing the random name with the
1240
                 * right node name if this was a handshake stage. */
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                clusterRenameNode(link->node, hdr->sender);
                redisLog(REDIS_DEBUG,"Handshake with node %.40s completed.",
                    link->node->name);
                link->node->flags &= ~REDIS_NODE_HANDSHAKE;
1245
                link->node->flags |= flags&(REDIS_NODE_MASTER|REDIS_NODE_SLAVE);
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                clusterDoBeforeSleep(CLUSTER_TODO_SAVE_CONFIG);
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1247 1248 1249 1250 1251 1252 1253 1254
            } else if (memcmp(link->node->name,hdr->sender,
                        REDIS_CLUSTER_NAMELEN) != 0)
            {
                /* If the reply has a non matching node ID we
                 * disconnect this node and set it as not having an associated
                 * address. */
                redisLog(REDIS_DEBUG,"PONG contains mismatching sender ID");
                link->node->flags |= REDIS_NODE_NOADDR;
1255 1256
                link->node->ip[0] = '\0';
                link->node->port = 0;
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                freeClusterLink(link);
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1258
                clusterDoBeforeSleep(CLUSTER_TODO_SAVE_CONFIG);
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1259 1260 1261
                return 0;
            }
        }
1262

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1263 1264
        /* Update the node address if it changed. */
        if (sender && type == CLUSTERMSG_TYPE_PING &&
1265
            !nodeInHandshake(sender) &&
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1266 1267
            nodeUpdateAddressIfNeeded(sender,link,ntohs(hdr->port)))
        {
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            clusterDoBeforeSleep(CLUSTER_TODO_SAVE_CONFIG|CLUSTER_TODO_UPDATE_STATE);
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1269 1270
        }

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1271
        /* Update our info about the node */
1272
        if (link->node && type == CLUSTERMSG_TYPE_PONG) {
1273
            link->node->pong_received = mstime();
1274 1275 1276
            link->node->ping_sent = 0;

            /* The PFAIL condition can be reversed without external
1277
             * help if it is momentary (that is, if it does not
1278 1279 1280 1281
             * turn into a FAIL state).
             *
             * The FAIL condition is also reversible under specific
             * conditions detected by clearNodeFailureIfNeeded(). */
1282
            if (nodeTimedOut(link->node)) {
1283
                link->node->flags &= ~REDIS_NODE_PFAIL;
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                clusterDoBeforeSleep(CLUSTER_TODO_SAVE_CONFIG|
                                     CLUSTER_TODO_UPDATE_STATE);
1286
            } else if (nodeFailed(link->node)) {
1287 1288 1289
                clearNodeFailureIfNeeded(link->node);
            }
        }
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1291
        /* Check for role switch: slave -> master or master -> slave. */
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1292 1293 1294 1295
        if (sender) {
            if (!memcmp(hdr->slaveof,REDIS_NODE_NULL_NAME,
                sizeof(hdr->slaveof)))
            {
1296
                /* Node is a master. */
1297
                clusterSetNodeAsMaster(sender);
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1298
            } else {
1299
                /* Node is a slave. */
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1300 1301
                clusterNode *master = clusterLookupNode(hdr->slaveof);

1302
                if (nodeIsMaster(sender)) {
1303
                    /* Master turned into a slave! Reconfigure the node. */
1304
                    clusterDelNodeSlots(sender);
1305 1306
                    sender->flags &= ~REDIS_NODE_MASTER;
                    sender->flags |= REDIS_NODE_SLAVE;
1307

1308 1309
                    /* Remove the list of slaves from the node. */
                    if (sender->numslaves) clusterNodeResetSlaves(sender);
1310 1311

                    /* Update config and state. */
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                    clusterDoBeforeSleep(CLUSTER_TODO_SAVE_CONFIG|
                                         CLUSTER_TODO_UPDATE_STATE);
1314 1315
                }

1316 1317
                /* Master node changed for this slave? */
                if (sender->slaveof != master) {
1318 1319
                    if (sender->slaveof)
                        clusterNodeRemoveSlave(sender->slaveof,sender);
1320 1321
                    clusterNodeAddSlave(master,sender);
                    sender->slaveof = master;
1322 1323

                    /* Update config. */
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1324
                    clusterDoBeforeSleep(CLUSTER_TODO_SAVE_CONFIG);
1325
                }
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1326 1327 1328
            }
        }

1329
        /* Update our info about served slots.
1330
         *
1331 1332
         * Note: this MUST happen after we update the master/slave state
         * so that REDIS_NODE_MASTER flag will be set. */
1333 1334

        /* Many checks are only needed if the set of served slots this
1335 1336 1337 1338
         * instance claims is different compared to the set of slots we have
         * for it. Check this ASAP to avoid other computational expansive
         * checks later. */
        clusterNode *sender_master = NULL; /* Sender or its master if slave. */
1339 1340 1341
        int dirty_slots = 0; /* Sender claimed slots don't match my view? */

        if (sender) {
1342
            sender_master = nodeIsMaster(sender) ? sender : sender->slaveof;
1343 1344 1345 1346 1347 1348
            if (sender_master) {
                dirty_slots = memcmp(sender_master->slots,
                        hdr->myslots,sizeof(hdr->myslots)) != 0;
            }
        }

1349 1350 1351
        /* 1) If the sender of the message is a master, and we detected that
         *    the set of slots it claims changed, scan the slots to see if we
         *    need to update our configuration. */
1352
        if (sender && nodeIsMaster(sender) && dirty_slots)
1353
            clusterUpdateSlotsConfigWith(sender,senderConfigEpoch,hdr->myslots);
1354

1355 1356 1357
        /* 2) We also check for the reverse condition, that is, the sender
         *    claims to serve slots we know are served by a master with a
         *    greater configEpoch. If this happens we inform the sender.
1358
         *
1359 1360 1361 1362
         * This is useful because sometimes after a partition heals, a
         * reappearing master may be the last one to claim a given set of
         * hash slots, but with a configuration that other instances know to
         * be deprecated. Example:
1363 1364 1365 1366 1367 1368
         *
         * A and B are master and slave for slots 1,2,3.
         * A is partitioned away, B gets promoted.
         * B is partitioned away, and A returns available.
         *
         * Usually B would PING A publishing its set of served slots and its
1369 1370 1371 1372
         * configEpoch, but because of the partition B can't inform A of the
         * new configuration, so other nodes that have an updated table must
         * do it. In this way A will stop to act as a master (or can try to
         * failover if there are the conditions to win the election). */
1373 1374 1375 1376 1377 1378 1379 1380 1381 1382
        if (sender && dirty_slots) {
            int j;

            for (j = 0; j < REDIS_CLUSTER_SLOTS; j++) {
                if (bitmapTestBit(hdr->myslots,j)) {
                    if (server.cluster->slots[j] == sender ||
                        server.cluster->slots[j] == NULL) continue;
                    if (server.cluster->slots[j]->configEpoch >
                        senderConfigEpoch)
                    {
1383 1384
                        redisLog(REDIS_WARNING,
                            "Node %.40s has old slots configuration, sending "
1385
                            "an UPDATE message about %.40s",
1386 1387
                                sender->name, server.cluster->slots[j]->name);
                        clusterSendUpdate(sender->link,server.cluster->slots[j]);
1388 1389 1390 1391 1392

                        /* TODO: instead of exiting the loop send every other
                         * UPDATE packet for other nodes that are the new owner
                         * of sender's slots. */
                        break;
1393
                    }
1394
                }
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1395 1396 1397 1398 1399
            }
        }

        /* Get info from the gossip section */
        clusterProcessGossipSection(hdr,link);
1400
    } else if (type == CLUSTERMSG_TYPE_FAIL) {
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1401 1402
        clusterNode *failing;

1403 1404
        if (sender) {
            failing = clusterLookupNode(hdr->data.fail.about.nodename);
1405 1406
            if (failing &&
                !(failing->flags & (REDIS_NODE_FAIL|REDIS_NODE_MYSELF)))
1407 1408 1409 1410 1411
            {
                redisLog(REDIS_NOTICE,
                    "FAIL message received from %.40s about %.40s",
                    hdr->sender, hdr->data.fail.about.nodename);
                failing->flags |= REDIS_NODE_FAIL;
1412
                failing->fail_time = mstime();
1413
                failing->flags &= ~REDIS_NODE_PFAIL;
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1414
                clusterDoBeforeSleep(CLUSTER_TODO_SAVE_CONFIG|CLUSTER_TODO_UPDATE_STATE);
1415 1416
            }
        } else {
A
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1417
            redisLog(REDIS_NOTICE,
1418
                "Ignoring FAIL message from unknonw node %.40s about %.40s",
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1419 1420
                hdr->sender, hdr->data.fail.about.nodename);
        }
1421 1422 1423 1424
    } else if (type == CLUSTERMSG_TYPE_PUBLISH) {
        robj *channel, *message;
        uint32_t channel_len, message_len;

A
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1425 1426
        /* Don't bother creating useless objects if there are no
         * Pub/Sub subscribers. */
1427 1428 1429
        if (dictSize(server.pubsub_channels) ||
           listLength(server.pubsub_patterns))
        {
1430 1431 1432 1433 1434
            channel_len = ntohl(hdr->data.publish.msg.channel_len);
            message_len = ntohl(hdr->data.publish.msg.message_len);
            channel = createStringObject(
                        (char*)hdr->data.publish.msg.bulk_data,channel_len);
            message = createStringObject(
1435 1436
                        (char*)hdr->data.publish.msg.bulk_data+channel_len,
                        message_len);
1437 1438 1439 1440
            pubsubPublishMessage(channel,message);
            decrRefCount(channel);
            decrRefCount(message);
        }
1441
    } else if (type == CLUSTERMSG_TYPE_FAILOVER_AUTH_REQUEST) {
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1442
        if (!sender) return 1;  /* We don't know that node. */
1443
        clusterSendFailoverAuthIfNeeded(sender,hdr);
1444
    } else if (type == CLUSTERMSG_TYPE_FAILOVER_AUTH_ACK) {
A
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1445
        if (!sender) return 1;  /* We don't know that node. */
1446
        /* We consider this vote only if the sender is a master serving
1447 1448
         * a non zero number of slots, and its currentEpoch is greater or
         * equal to epoch where this node started the election. */
1449
        if (nodeIsMaster(sender) && sender->numslots > 0 &&
1450
            senderCurrentEpoch >= server.cluster->failover_auth_epoch)
1451
        {
1452
            server.cluster->failover_auth_count++;
1453 1454
            /* Maybe we reached a quorum here, set a flag to make sure
             * we check ASAP. */
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1455
            clusterDoBeforeSleep(CLUSTER_TODO_HANDLE_FAILOVER);
1456
        }
1457 1458 1459 1460 1461 1462 1463 1464 1465 1466
    } else if (type == CLUSTERMSG_TYPE_UPDATE) {
        clusterNode *n; /* The node the update is about. */
        uint64_t reportedConfigEpoch = ntohu64(hdr->data.update.nodecfg.configEpoch);

        if (!sender) return 1;  /* We don't know the sender. */
        n = clusterLookupNode(hdr->data.update.nodecfg.nodename);
        if (!n) return 1;   /* We don't know the reported node. */
        if (n->configEpoch >= reportedConfigEpoch) return 1; /* Nothing new. */

        /* If in our current config the node is a slave, set it as a master. */
1467
        if (nodeIsSlave(n)) clusterSetNodeAsMaster(n);
1468

1469 1470
        /* Check the bitmap of served slots and udpate our
         * config accordingly. */
1471 1472
        clusterUpdateSlotsConfigWith(n,reportedConfigEpoch,
            hdr->data.update.nodecfg.slots);
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1473
    } else {
1474
        redisLog(REDIS_WARNING,"Received unknown packet type: %d", type);
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1475 1476 1477 1478 1479 1480 1481 1482 1483 1484 1485 1486 1487 1488 1489 1490 1491 1492 1493 1494 1495 1496 1497 1498 1499
    }
    return 1;
}

/* This function is called when we detect the link with this node is lost.
   We set the node as no longer connected. The Cluster Cron will detect
   this connection and will try to get it connected again.
   
   Instead if the node is a temporary node used to accept a query, we
   completely free the node on error. */
void handleLinkIOError(clusterLink *link) {
    freeClusterLink(link);
}

/* Send data. This is handled using a trivial send buffer that gets
 * consumed by write(). We don't try to optimize this for speed too much
 * as this is a very low traffic channel. */
void clusterWriteHandler(aeEventLoop *el, int fd, void *privdata, int mask) {
    clusterLink *link = (clusterLink*) privdata;
    ssize_t nwritten;
    REDIS_NOTUSED(el);
    REDIS_NOTUSED(mask);

    nwritten = write(fd, link->sndbuf, sdslen(link->sndbuf));
    if (nwritten <= 0) {
1500
        redisLog(REDIS_DEBUG,"I/O error writing to node link: %s",
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1501 1502 1503 1504
            strerror(errno));
        handleLinkIOError(link);
        return;
    }
1505
    sdsrange(link->sndbuf,nwritten,-1);
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1506 1507 1508 1509 1510 1511 1512 1513
    if (sdslen(link->sndbuf) == 0)
        aeDeleteFileEvent(server.el, link->fd, AE_WRITABLE);
}

/* Read data. Try to read the first field of the header first to check the
 * full length of the packet. When a whole packet is in memory this function
 * will call the function to process the packet. And so forth. */
void clusterReadHandler(aeEventLoop *el, int fd, void *privdata, int mask) {
1514
    char buf[sizeof(clusterMsg)];
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1515 1516 1517
    ssize_t nread;
    clusterMsg *hdr;
    clusterLink *link = (clusterLink*) privdata;
1518
    int readlen, rcvbuflen;
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1519 1520 1521
    REDIS_NOTUSED(el);
    REDIS_NOTUSED(mask);

1522 1523 1524 1525 1526 1527 1528 1529 1530 1531 1532 1533 1534 1535 1536 1537 1538
    while(1) { /* Read as long as there is data to read. */
        rcvbuflen = sdslen(link->rcvbuf);
        if (rcvbuflen < 4) {
            /* First, obtain the first four bytes to get the full message
             * length. */
            readlen = 4 - rcvbuflen;
        } else {
            /* Finally read the full message. */
            hdr = (clusterMsg*) link->rcvbuf;
            if (rcvbuflen == 4) {
                /* Perform some sanity check on the message length. */
                if (ntohl(hdr->totlen) < CLUSTERMSG_MIN_LEN) {
                    redisLog(REDIS_WARNING,
                        "Bad message length received from Cluster bus.");
                    handleLinkIOError(link);
                    return;
                }
1539
            }
1540 1541
            readlen = ntohl(hdr->totlen) - rcvbuflen;
            if (readlen > sizeof(buf)) readlen = sizeof(buf);
1542
        }
A
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1543

1544 1545
        nread = read(fd,buf,readlen);
        if (nread == -1 && errno == EAGAIN) return; /* No more data ready. */
A
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1546

1547 1548 1549 1550 1551 1552 1553 1554 1555 1556 1557 1558
        if (nread <= 0) {
            /* I/O error... */
            redisLog(REDIS_DEBUG,"I/O error reading from node link: %s",
                (nread == 0) ? "connection closed" : strerror(errno));
            handleLinkIOError(link);
            return;
        } else {
            /* Read data and recast the pointer to the new buffer. */
            link->rcvbuf = sdscatlen(link->rcvbuf,buf,nread);
            hdr = (clusterMsg*) link->rcvbuf;
            rcvbuflen += nread;
        }
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1559

1560 1561 1562 1563 1564 1565 1566 1567
        /* Total length obtained? Process this packet. */
        if (rcvbuflen >= 4 && rcvbuflen == ntohl(hdr->totlen)) {
            if (clusterProcessPacket(link)) {
                sdsfree(link->rcvbuf);
                link->rcvbuf = sdsempty();
            } else {
                return; /* Link no longer valid. */
            }
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1568 1569 1570 1571
        }
    }
}

1572 1573 1574 1575 1576
/* Put stuff into the send buffer.
 *
 * It is guaranteed that this function will never have as a side effect
 * the link to be invalidated, so it is safe to call this function
 * from event handlers that will do stuff with the same link later. */
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1577 1578 1579 1580 1581 1582
void clusterSendMessage(clusterLink *link, unsigned char *msg, size_t msglen) {
    if (sdslen(link->sndbuf) == 0 && msglen != 0)
        aeCreateFileEvent(server.el,link->fd,AE_WRITABLE,
                    clusterWriteHandler,link);

    link->sndbuf = sdscatlen(link->sndbuf, msg, msglen);
1583
    server.cluster->stats_bus_messages_sent++;
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1584 1585
}

1586
/* Send a message to all the nodes that are part of the cluster having
1587 1588 1589 1590 1591
 * a connected link.
 * 
 * It is guaranteed that this function will never have as a side effect
 * some node->link to be invalidated, so it is safe to call this function
 * from event handlers that will do stuff with node links later. */
1592 1593 1594 1595
void clusterBroadcastMessage(void *buf, size_t len) {
    dictIterator *di;
    dictEntry *de;

1596
    di = dictGetSafeIterator(server.cluster->nodes);
1597
    while((de = dictNext(di)) != NULL) {
1598
        clusterNode *node = dictGetVal(de);
1599 1600

        if (!node->link) continue;
1601 1602
        if (node->flags & (REDIS_NODE_MYSELF|REDIS_NODE_HANDSHAKE))
            continue;
1603 1604 1605 1606 1607
        clusterSendMessage(node->link,buf,len);
    }
    dictReleaseIterator(di);
}

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/* Build the message header */
void clusterBuildMessageHdr(clusterMsg *hdr, int type) {
1610
    int totlen = 0;
1611
    uint64_t offset;
1612
    clusterNode *master;
1613 1614 1615 1616 1617

    /* If this node is a master, we send its slots bitmap and configEpoch.
     * If this node is a slave we send the master's information instead (the
     * node is flagged as slave so the receiver knows that it is NOT really
     * in charge for this slots. */
1618
    master = (nodeIsSlave(myself) && myself->slaveof) ?
1619
              myself->slaveof : myself;
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    memset(hdr,0,sizeof(*hdr));
    hdr->type = htons(type);
1623
    memcpy(hdr->sender,myself->name,REDIS_CLUSTER_NAMELEN);
1624 1625

    memcpy(hdr->myslots,master->slots,sizeof(hdr->myslots));
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    memset(hdr->slaveof,0,REDIS_CLUSTER_NAMELEN);
1627 1628
    if (myself->slaveof != NULL)
        memcpy(hdr->slaveof,myself->slaveof->name, REDIS_CLUSTER_NAMELEN);
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    hdr->port = htons(server.port);
1630
    hdr->flags = htons(myself->flags);
1631
    hdr->state = server.cluster->state;
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1633
    /* Set the currentEpoch and configEpochs. */
1634
    hdr->currentEpoch = htonu64(server.cluster->currentEpoch);
1635
    hdr->configEpoch = htonu64(master->configEpoch);
1636

1637
    /* Set the replication offset. */
1638 1639 1640
    if (nodeIsSlave(myself))
        offset = replicationGetSlaveOffset();
    else
1641 1642 1643 1644 1645
        offset = server.master_repl_offset;
    hdr->offset = htonu64(offset);

    /* Compute the message length for certain messages. For other messages
     * this is up to the caller. */
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    if (type == CLUSTERMSG_TYPE_FAIL) {
        totlen = sizeof(clusterMsg)-sizeof(union clusterMsgData);
        totlen += sizeof(clusterMsgDataFail);
1649 1650 1651
    } else if (type == CLUSTERMSG_TYPE_UPDATE) {
        totlen = sizeof(clusterMsg)-sizeof(union clusterMsgData);
        totlen += sizeof(clusterMsgDataUpdate);
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    }
    hdr->totlen = htonl(totlen);
1654
    /* For PING, PONG, and MEET, fixing the totlen field is up to the caller. */
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}

/* Send a PING or PONG packet to the specified node, making sure to add enough
 * gossip informations. */
void clusterSendPing(clusterLink *link, int type) {
1660
    unsigned char buf[sizeof(clusterMsg)];
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    clusterMsg *hdr = (clusterMsg*) buf;
    int gossipcount = 0, totlen;
    /* freshnodes is the number of nodes we can still use to populate the
     * gossip section of the ping packet. Basically we start with the nodes
     * we have in memory minus two (ourself and the node we are sending the
     * message to). Every time we add a node we decrement the counter, so when
     * it will drop to <= zero we know there is no more gossip info we can
     * send. */
1669
    int freshnodes = dictSize(server.cluster->nodes)-2;
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    if (link->node && type == CLUSTERMSG_TYPE_PING)
1672
        link->node->ping_sent = mstime();
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    clusterBuildMessageHdr(hdr,type);
        
    /* Populate the gossip fields */
    while(freshnodes > 0 && gossipcount < 3) {
1677
        struct dictEntry *de = dictGetRandomKey(server.cluster->nodes);
1678
        clusterNode *this = dictGetVal(de);
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        clusterMsgDataGossip *gossip;
        int j;

1682 1683 1684 1685 1686 1687
        /* In the gossip section don't include:
         * 1) Myself.
         * 2) Nodes in HANDSHAKE state.
         * 3) Nodes with the NOADDR flag set.
         * 4) Disconnected nodes if they don't have configured slots.
         */
1688
        if (this == myself ||
1689
            this->flags & (REDIS_NODE_HANDSHAKE|REDIS_NODE_NOADDR) ||
1690
            (this->link == NULL && this->numslots == 0))
1691
        {
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                freshnodes--; /* otherwise we may loop forever. */
                continue;
        }

        /* Check if we already added this node */
        for (j = 0; j < gossipcount; j++) {
            if (memcmp(hdr->data.ping.gossip[j].nodename,this->name,
                    REDIS_CLUSTER_NAMELEN) == 0) break;
        }
        if (j != gossipcount) continue;

        /* Add it */
        freshnodes--;
        gossip = &(hdr->data.ping.gossip[gossipcount]);
        memcpy(gossip->nodename,this->name,REDIS_CLUSTER_NAMELEN);
        gossip->ping_sent = htonl(this->ping_sent);
        gossip->pong_received = htonl(this->pong_received);
        memcpy(gossip->ip,this->ip,sizeof(this->ip));
        gossip->port = htons(this->port);
        gossip->flags = htons(this->flags);
        gossipcount++;
    }
    totlen = sizeof(clusterMsg)-sizeof(union clusterMsgData);
    totlen += (sizeof(clusterMsgDataGossip)*gossipcount);
    hdr->count = htons(gossipcount);
    hdr->totlen = htonl(totlen);
    clusterSendMessage(link,buf,totlen);
}

1721 1722
/* Send a PONG packet to every connected node that's not in handshake state
 * and for which we have a valid link.
1723
 *
1724 1725
 * In Redis Cluster pongs are not used just for failure detection, but also
 * to carry important configuration information. So broadcasting a pong is
1726
 * useful when something changes in the configuration and we want to make
1727 1728 1729 1730 1731 1732 1733 1734 1735 1736 1737
 * the cluster aware ASAP (for instance after a slave promotion).
 *
 * The 'target' argument specifies the receiving instances using the
 * defines below:
 *
 * CLUSTER_BROADCAST_ALL -> All known instances.
 * CLUSTER_BROADCAST_LOCAL_SLAVES -> All slaves in my master-slaves ring.
 */
#define CLUSTER_BROADCAST_ALL 0
#define CLUSTER_BROADCAST_LOCAL_SLAVES 1
void clusterBroadcastPong(int target) {
1738 1739 1740
    dictIterator *di;
    dictEntry *de;

1741
    di = dictGetSafeIterator(server.cluster->nodes);
1742 1743 1744
    while((de = dictNext(di)) != NULL) {
        clusterNode *node = dictGetVal(de);

1745
        if (!node->link) continue;
1746
        if (node == myself || nodeInHandshake(node)) continue;
1747 1748
        if (target == CLUSTER_BROADCAST_LOCAL_SLAVES) {
            int local_slave =
1749
                nodeIsSlave(node) && node->slaveof &&
1750 1751 1752
                (node->slaveof == myself || node->slaveof == myself->slaveof);
            if (!local_slave) continue;
        }
1753 1754 1755 1756 1757
        clusterSendPing(node->link,CLUSTERMSG_TYPE_PONG);
    }
    dictReleaseIterator(di);
}

1758 1759 1760 1761
/* Send a PUBLISH message.
 *
 * If link is NULL, then the message is broadcasted to the whole cluster. */
void clusterSendPublish(clusterLink *link, robj *channel, robj *message) {
1762
    unsigned char buf[sizeof(clusterMsg)], *payload;
1763 1764 1765
    clusterMsg *hdr = (clusterMsg*) buf;
    uint32_t totlen;
    uint32_t channel_len, message_len;
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1767 1768 1769 1770
    channel = getDecodedObject(channel);
    message = getDecodedObject(message);
    channel_len = sdslen(channel->ptr);
    message_len = sdslen(message->ptr);
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1772 1773 1774 1775 1776 1777 1778 1779 1780 1781 1782 1783 1784
    clusterBuildMessageHdr(hdr,CLUSTERMSG_TYPE_PUBLISH);
    totlen = sizeof(clusterMsg)-sizeof(union clusterMsgData);
    totlen += sizeof(clusterMsgDataPublish) + channel_len + message_len;

    hdr->data.publish.msg.channel_len = htonl(channel_len);
    hdr->data.publish.msg.message_len = htonl(message_len);
    hdr->totlen = htonl(totlen);

    /* Try to use the local buffer if possible */
    if (totlen < sizeof(buf)) {
        payload = buf;
    } else {
        payload = zmalloc(totlen);
1785
        memcpy(payload,hdr,sizeof(*hdr));
1786
        hdr = (clusterMsg*) payload;
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    }
1788 1789 1790 1791 1792 1793 1794 1795 1796 1797 1798 1799
    memcpy(hdr->data.publish.msg.bulk_data,channel->ptr,sdslen(channel->ptr));
    memcpy(hdr->data.publish.msg.bulk_data+sdslen(channel->ptr),
        message->ptr,sdslen(message->ptr));

    if (link)
        clusterSendMessage(link,payload,totlen);
    else
        clusterBroadcastMessage(payload,totlen);

    decrRefCount(channel);
    decrRefCount(message);
    if (payload != buf) zfree(payload);
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}

/* Send a FAIL message to all the nodes we are able to contact.
 * The FAIL message is sent when we detect that a node is failing
 * (REDIS_NODE_PFAIL) and we also receive a gossip confirmation of this:
 * we switch the node state to REDIS_NODE_FAIL and ask all the other
 * nodes to do the same ASAP. */
void clusterSendFail(char *nodename) {
1808
    unsigned char buf[sizeof(clusterMsg)];
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    clusterMsg *hdr = (clusterMsg*) buf;

    clusterBuildMessageHdr(hdr,CLUSTERMSG_TYPE_FAIL);
    memcpy(hdr->data.fail.about.nodename,nodename,REDIS_CLUSTER_NAMELEN);
    clusterBroadcastMessage(buf,ntohl(hdr->totlen));
}

1816 1817 1818 1819
/* Send an UPDATE message to the specified link carrying the specified 'node'
 * slots configuration. The node name, slots bitmap, and configEpoch info
 * are included. */
void clusterSendUpdate(clusterLink *link, clusterNode *node) {
1820
    unsigned char buf[sizeof(clusterMsg)];
1821 1822
    clusterMsg *hdr = (clusterMsg*) buf;

1823
    if (link == NULL) return;
1824 1825 1826 1827 1828 1829 1830
    clusterBuildMessageHdr(hdr,CLUSTERMSG_TYPE_UPDATE);
    memcpy(hdr->data.update.nodecfg.nodename,node->name,REDIS_CLUSTER_NAMELEN);
    hdr->data.update.nodecfg.configEpoch = htonu64(node->configEpoch);
    memcpy(hdr->data.update.nodecfg.slots,node->slots,sizeof(node->slots));
    clusterSendMessage(link,buf,ntohl(hdr->totlen));
}

1831 1832 1833 1834 1835 1836 1837 1838 1839 1840 1841
/* -----------------------------------------------------------------------------
 * CLUSTER Pub/Sub support
 *
 * For now we do very little, just propagating PUBLISH messages across the whole
 * cluster. In the future we'll try to get smarter and avoiding propagating those
 * messages to hosts without receives for a given channel.
 * -------------------------------------------------------------------------- */
void clusterPropagatePublish(robj *channel, robj *message) {
    clusterSendPublish(NULL, channel, message);
}

1842 1843 1844 1845
/* -----------------------------------------------------------------------------
 * SLAVE node specific functions
 * -------------------------------------------------------------------------- */

1846 1847 1848 1849 1850 1851 1852
/* This function sends a FAILOVE_AUTH_REQUEST message to every node in order to
 * see if there is the quorum for this slave instance to failover its failing
 * master.
 *
 * Note that we send the failover request to everybody, master and slave nodes,
 * but only the masters are supposed to reply to our query. */
void clusterRequestFailoverAuth(void) {
1853
    unsigned char buf[sizeof(clusterMsg)];
1854 1855 1856 1857 1858 1859
    clusterMsg *hdr = (clusterMsg*) buf;
    uint32_t totlen;

    clusterBuildMessageHdr(hdr,CLUSTERMSG_TYPE_FAILOVER_AUTH_REQUEST);
    totlen = sizeof(clusterMsg)-sizeof(union clusterMsgData);
    hdr->totlen = htonl(totlen);
1860
    clusterBroadcastMessage(buf,totlen);
1861 1862
}

1863 1864
/* Send a FAILOVER_AUTH_ACK message to the specified node. */
void clusterSendFailoverAuth(clusterNode *node) {
1865
    unsigned char buf[sizeof(clusterMsg)];
1866 1867 1868 1869 1870 1871 1872
    clusterMsg *hdr = (clusterMsg*) buf;
    uint32_t totlen;

    if (!node->link) return;
    clusterBuildMessageHdr(hdr,CLUSTERMSG_TYPE_FAILOVER_AUTH_ACK);
    totlen = sizeof(clusterMsg)-sizeof(union clusterMsgData);
    hdr->totlen = htonl(totlen);
1873
    clusterSendMessage(node->link,buf,totlen);
1874 1875
}

1876
/* Vote for the node asking for our vote if there are the conditions. */
1877
void clusterSendFailoverAuthIfNeeded(clusterNode *node, clusterMsg *request) {
1878
    clusterNode *master = node->slaveof;
1879 1880 1881 1882
    uint64_t requestCurrentEpoch = ntohu64(request->currentEpoch);
    uint64_t requestConfigEpoch = ntohu64(request->configEpoch);
    unsigned char *claimed_slots = request->myslots;
    int j;
1883 1884 1885

    /* IF we are not a master serving at least 1 slot, we don't have the
     * right to vote, as the cluster size in Redis Cluster is the number
1886 1887
     * of masters serving at least one slot, and quorum is the cluster
     * size + 1 */
1888
    if (nodeIsSlave(myself) || myself->numslots == 0) return;
1889 1890

    /* Request epoch must be >= our currentEpoch. */
1891
    if (requestCurrentEpoch < server.cluster->currentEpoch) return;
1892

1893
    /* I already voted for this epoch? Return ASAP. */
1894
    if (server.cluster->last_vote_epoch == server.cluster->currentEpoch) return;
1895 1896

    /* Node must be a slave and its master down. */
1897
    if (nodeIsMaster(node) || master == NULL || !nodeFailed(master)) return;
1898

1899 1900 1901
    /* We did not voted for a slave about this master for two
     * times the node timeout. This is not strictly needed for correctness
     * of the algorithm but makes the base case more linear. */
1902 1903
    if (mstime() - node->slaveof->voted_time < server.cluster_node_timeout * 2)
        return;
1904

1905 1906 1907
    /* The slave requesting the vote must have a configEpoch for the claimed
     * slots that is >= the one of the masters currently serving the same
     * slots in the current configuration. */
1908 1909 1910 1911 1912 1913 1914 1915 1916 1917
    for (j = 0; j < REDIS_CLUSTER_SLOTS; j++) {
        if (bitmapTestBit(claimed_slots, j) == 0) continue;
        if (server.cluster->slots[j] == NULL ||
            server.cluster->slots[j]->configEpoch <= requestConfigEpoch) continue;
        /* If we reached this point we found a slot that in our current slots
         * is served by a master with a greater configEpoch than the one claimed
         * by the slave requesting our vote. Refuse to vote for this slave. */
        return;
    }

1918
    /* We can vote for this slave. */
1919
    clusterSendFailoverAuth(node);
1920
    server.cluster->last_vote_epoch = server.cluster->currentEpoch;
1921
    node->slaveof->voted_time = mstime();
1922 1923
}

1924 1925 1926 1927 1928 1929 1930 1931 1932 1933 1934 1935 1936 1937 1938 1939 1940 1941 1942 1943 1944 1945 1946 1947 1948 1949 1950 1951
/* This function returns the "rank" of this instance, a slave, in the context
 * of its master-slaves ring. The rank of the slave is given by the number of
 * other slaves for the same master that have a better replication offset
 * compared to the local one (better means, greater, so they claim more data).
 *
 * A slave with rank 0 is the one with the greatest (most up to date)
 * replication offset, and so forth. Note that because how the rank is computed
 * multiple slaves may have the same rank, in case they have the same offset.
 *
 * The slave rank is used to add a delay to start an election in order to
 * get voted and replace a failing master. Slaves with better replication
 * offsets are more likely to win. */
int clusterGetSlaveRank(void) {
    long long myoffset;
    int j, rank = 0;
    clusterNode *master;

    redisAssert(nodeIsSlave(myself));
    master = myself->slaveof;
    if (master == NULL) return 0; /* Never called by slaves without master. */

    myoffset = replicationGetSlaveOffset();
    for (j = 0; j < master->numslaves; j++)
        if (master->slaves[j] != myself &&
            master->slaves[j]->repl_offset > myoffset) rank++;
    return rank;
}

1952
/* This function is called if we are a slave node and our master serving
1953
 * a non-zero amount of hash slots is in FAIL state.
1954 1955 1956
 *
 * The gaol of this function is:
 * 1) To check if we are able to perform a failover, is our data updated?
1957
 * 2) Try to get elected by masters.
1958
 * 3) Perform the failover informing all the other nodes.
1959 1960
 */
void clusterHandleSlaveFailover(void) {
1961
    mstime_t data_age;
1962
    mstime_t auth_age = mstime() - server.cluster->failover_auth_time;
1963
    int needed_quorum = (server.cluster->size / 2) + 1;
1964
    int j;
1965

1966 1967
    /* Set data_age to the number of seconds we are disconnected from
     * the master. */
1968
    if (server.repl_state == REDIS_REPL_CONNECTED) {
1969
        data_age = (server.unixtime - server.master->lastinteraction) * 1000;
1970
    } else {
1971
        data_age = (server.unixtime - server.repl_down_since) * 1000;
1972 1973
    }

1974 1975 1976 1977
    /* Pre conditions to run the function:
     * 1) We are a slave.
     * 2) Our master is flagged as FAIL.
     * 3) It is serving slots. */
1978
    if (nodeIsMaster(myself) ||
1979
        myself->slaveof == NULL ||
1980
        !nodeFailed(myself->slaveof) ||
1981
        myself->slaveof->numslots == 0) return;
1982

1983 1984 1985 1986 1987 1988
    /* Remove the node timeout from the data age as it is fine that we are
     * disconnected from our master at least for the time it was down to be
     * flagged as FAIL, that's the baseline. */
    if (data_age > server.cluster_node_timeout)
        data_age -= server.cluster_node_timeout;

1989 1990 1991
    /* Check if our data is recent enough. For now we just use a fixed
     * constant of ten times the node timeout since the cluster should
     * react much faster to a master down. */
1992
    if (data_age >
1993 1994
        (server.repl_ping_slave_period * 1000) +
        (server.cluster_node_timeout * REDIS_CLUSTER_SLAVE_VALIDITY_MULT))
1995
        return;
1996

1997
    /* Compute the time at which we can start an election. */
1998
    if (auth_age >
1999
        server.cluster_node_timeout * REDIS_CLUSTER_FAILOVER_AUTH_RETRY_MULT)
2000
    {
2001 2002
        server.cluster->failover_auth_time = mstime() +
            500 + /* Fixed delay of 500 milliseconds, let FAIL msg propagate. */
2003
            data_age / 10 + /* Add 100 milliseconds for every second of age. */
2004
            random() % 500; /* Random delay between 0 and 500 milliseconds. */
2005
        server.cluster->failover_auth_count = 0;
2006
        server.cluster->failover_auth_sent = 0;
2007 2008
        redisLog(REDIS_WARNING,
            "Start of election delayed for %lld milliseconds.",
2009 2010 2011 2012 2013 2014 2015 2016
            server.cluster->failover_auth_time - mstime());
        return;
    }

    /* Return ASAP if we can't still start the election. */
    if (mstime() < server.cluster->failover_auth_time) return;

    /* Return ASAP if the election is too old to be valid. */
2017
    if (auth_age > server.cluster_node_timeout) return;
2018 2019 2020 2021 2022 2023

    /* Ask for votes if needed. */
    if (server.cluster->failover_auth_sent == 0) {
        server.cluster->currentEpoch++;
        server.cluster->failover_auth_epoch = server.cluster->currentEpoch;
        redisLog(REDIS_WARNING,"Starting a failover election for epoch %llu.",
2024
            (unsigned long long) server.cluster->currentEpoch);
2025
        clusterRequestFailoverAuth();
2026
        server.cluster->failover_auth_sent = 1;
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        clusterDoBeforeSleep(CLUSTER_TODO_SAVE_CONFIG|
                             CLUSTER_TODO_UPDATE_STATE|
                             CLUSTER_TODO_FSYNC_CONFIG);
2030 2031 2032 2033
        return; /* Wait for replies. */
    }

    /* Check if we reached the quorum. */
2034
    if (server.cluster->failover_auth_count >= needed_quorum) {
2035
        clusterNode *oldmaster = myself->slaveof;
2036

2037
        redisLog(REDIS_WARNING,
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            "Failover election won: I'm the new master.");
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2039 2040 2041 2042
        /* We have the quorum, perform all the steps to correctly promote
         * this slave to a master.
         *
         * 1) Turn this node into a master. */
2043 2044 2045 2046
        clusterNodeRemoveSlave(myself->slaveof, myself);
        myself->flags &= ~REDIS_NODE_SLAVE;
        myself->flags |= REDIS_NODE_MASTER;
        myself->slaveof = NULL;
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        replicationUnsetMaster();

2049 2050 2051 2052
        /* 2) Claim all the slots assigned to our master. */
        for (j = 0; j < REDIS_CLUSTER_SLOTS; j++) {
            if (clusterNodeGetSlotBit(oldmaster,j)) {
                clusterDelSlot(j);
2053
                clusterAddSlot(myself,j);
2054 2055 2056
            }
        }

2057
        /* 3) Update my configEpoch to the epoch of the election. */
2058
        myself->configEpoch = server.cluster->failover_auth_epoch;
2059

2060
        /* 4) Update state and save config. */
2061
        clusterUpdateState();
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        clusterSaveConfigOrDie(1);
2063 2064 2065

        /* 5) Pong all the other nodes so that they can update the state
         *    accordingly and detect that we switched to master role. */
2066
        clusterBroadcastPong(CLUSTER_BROADCAST_ALL);
2067
    }
2068 2069
}

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/* -----------------------------------------------------------------------------
 * CLUSTER cron job
 * -------------------------------------------------------------------------- */

2074
/* This is executed 10 times every second */
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void clusterCron(void) {
    dictIterator *di;
    dictEntry *de;
2078
    int j, update_state = 0;
2079
    mstime_t min_pong = 0, now = mstime();
2080
    clusterNode *min_pong_node = NULL;
2081
    static unsigned long long iteration = 0;
2082
    mstime_t handshake_timeout;
2083 2084

    iteration++; /* Number of times this function was called so far. */
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2086
    /* The handshake timeout is the time after which a handshake node that was
2087 2088 2089 2090 2091 2092
     * not turned into a normal node is removed from the nodes. Usually it is
     * just the NODE_TIMEOUT value, but when NODE_TIMEOUT is too small we use
     * the value of 1 second. */
    handshake_timeout = server.cluster_node_timeout;
    if (handshake_timeout < 1000) handshake_timeout = 1000;

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2093
    /* Check if we have disconnected nodes and re-establish the connection. */
2094
    di = dictGetSafeIterator(server.cluster->nodes);
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    while((de = dictNext(di)) != NULL) {
2096
        clusterNode *node = dictGetVal(de);
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        if (node->flags & (REDIS_NODE_MYSELF|REDIS_NODE_NOADDR)) continue;
2099 2100 2101

        /* A Node in HANDSHAKE state has a limited lifespan equal to the
         * configured node timeout. */
2102
        if (nodeInHandshake(node) && now - node->ctime > handshake_timeout) {
2103 2104 2105 2106
            freeClusterNode(node);
            continue;
        }

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2107 2108
        if (node->link == NULL) {
            int fd;
2109
            mstime_t old_ping_sent;
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2110 2111 2112 2113 2114 2115 2116 2117 2118
            clusterLink *link;

            fd = anetTcpNonBlockConnect(server.neterr, node->ip,
                node->port+REDIS_CLUSTER_PORT_INCR);
            if (fd == -1) continue;
            link = createClusterLink(node);
            link->fd = fd;
            node->link = link;
            aeCreateFileEvent(server.el,link->fd,AE_READABLE,clusterReadHandler,link);
2119 2120 2121 2122
            /* Queue a PING in the new connection ASAP: this is crucial
             * to avoid false positives in failure detection.
             *
             * If the node is flagged as MEET, we send a MEET message instead
A
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2123 2124
             * of a PING one, to force the receiver to add us in its node
             * table. */
2125
            old_ping_sent = node->ping_sent;
A
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2126 2127
            clusterSendPing(link, node->flags & REDIS_NODE_MEET ?
                    CLUSTERMSG_TYPE_MEET : CLUSTERMSG_TYPE_PING);
2128 2129 2130 2131 2132 2133
            if (old_ping_sent) {
                /* If there was an active ping before the link was
                 * disconnected, we want to restore the ping time, otherwise
                 * replaced by the clusterSendPing() call. */
                node->ping_sent = old_ping_sent;
            }
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2134 2135 2136 2137 2138 2139 2140
            /* We can clear the flag after the first packet is sent.
             * If we'll never receive a PONG, we'll never send new packets
             * to this node. Instead after the PONG is received and we
             * are no longer in meet/handshake status, we want to send
             * normal PING packets. */
            node->flags &= ~REDIS_NODE_MEET;

2141
            redisLog(REDIS_DEBUG,"Connecting with Node %.40s at %s:%d", node->name, node->ip, node->port+REDIS_CLUSTER_PORT_INCR);
A
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2142 2143 2144 2145
        }
    }
    dictReleaseIterator(di);

2146 2147 2148 2149 2150 2151 2152 2153 2154 2155 2156 2157 2158 2159 2160 2161 2162 2163 2164 2165
    /* Ping some random node 1 time every 10 iterations, so that we usually ping
     * one random node every second. */
    if (!(iteration % 10)) {
        /* Check a few random nodes and ping the one with the oldest
         * pong_received time. */
        for (j = 0; j < 5; j++) {
            de = dictGetRandomKey(server.cluster->nodes);
            clusterNode *this = dictGetVal(de);

            /* Don't ping nodes disconnected or with a ping currently active. */
            if (this->link == NULL || this->ping_sent != 0) continue;
            if (this->flags & (REDIS_NODE_MYSELF|REDIS_NODE_HANDSHAKE)) continue;
            if (min_pong_node == NULL || min_pong > this->pong_received) {
                min_pong_node = this;
                min_pong = this->pong_received;
            }
        }
        if (min_pong_node) {
            redisLog(REDIS_DEBUG,"Pinging node %.40s", min_pong_node->name);
            clusterSendPing(min_pong_node->link, CLUSTERMSG_TYPE_PING);
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2166 2167 2168 2169
        }
    }

    /* Iterate nodes to check if we need to flag something as failing */
2170
    di = dictGetSafeIterator(server.cluster->nodes);
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2171
    while((de = dictNext(di)) != NULL) {
2172
        clusterNode *node = dictGetVal(de);
2173
        now = mstime(); /* Use an updated time at every iteration. */
2174
        mstime_t delay;
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2175 2176

        if (node->flags &
2177 2178
            (REDIS_NODE_MYSELF|REDIS_NODE_NOADDR|REDIS_NODE_HANDSHAKE))
                continue;
2179

2180 2181 2182 2183
        /* If we are waiting for the PONG more than half the cluster
         * timeout, reconnect the link: maybe there is a connection
         * issue even if the node is alive. */
        if (node->link && /* is connected */
2184
            now - node->link->ctime >
2185
            server.cluster_node_timeout && /* was not already reconnected */
2186 2187 2188 2189 2190 2191 2192 2193 2194 2195 2196 2197 2198
            node->ping_sent && /* we already sent a ping */
            node->pong_received < node->ping_sent && /* still waiting pong */
            /* and we are waiting for the pong more than timeout/2 */
            now - node->ping_sent > server.cluster_node_timeout/2)
        {
            /* Disconnect the link, it will be reconnected automatically. */
            freeClusterLink(node->link);
        }

        /* If we have currently no active ping in this instance, and the
         * received PONG is older than half the cluster timeout, send
         * a new ping now, to ensure all the nodes are pinged without
         * a too big delay. */
2199
        if (node->link &&
2200 2201
            node->ping_sent == 0 &&
            (now - node->pong_received) > server.cluster_node_timeout/2)
2202 2203 2204 2205 2206
        {
            clusterSendPing(node->link, CLUSTERMSG_TYPE_PING);
            continue;
        }

2207 2208
        /* Check only if we have an active ping for this instance. */
        if (node->ping_sent == 0) continue;
2209

2210 2211 2212 2213
        /* Compute the delay of the PONG. Note that if we already received
         * the PONG, then node->ping_sent is zero, so can't reach this
         * code at all. */
        delay = now - node->ping_sent;
2214

2215
        if (delay > server.cluster_node_timeout) {
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            /* Timeout reached. Set the node as possibly failing if it is
2217
             * not already in this state. */
2218
            if (!(node->flags & (REDIS_NODE_PFAIL|REDIS_NODE_FAIL))) {
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2219 2220 2221
                redisLog(REDIS_DEBUG,"*** NODE %.40s possibly failing",
                    node->name);
                node->flags |= REDIS_NODE_PFAIL;
2222
                update_state = 1;
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2223 2224 2225 2226
            }
        }
    }
    dictReleaseIterator(di);
2227 2228 2229 2230

    /* If we are a slave node but the replication is still turned off,
     * enable it if we know the address of our master and it appears to
     * be up. */
2231
    if (nodeIsSlave(myself) &&
2232
        server.masterhost == NULL &&
2233
        myself->slaveof &&
2234
        nodeHasAddr(myself->slaveof))
2235
    {
2236
        replicationSetMaster(myself->slaveof->ip, myself->slaveof->port);
2237
    }
2238

2239
    clusterHandleSlaveFailover();
2240 2241
    if (update_state || server.cluster->state == REDIS_CLUSTER_FAIL)
        clusterUpdateState();
2242 2243 2244 2245 2246
}

/* This function is called before the event handler returns to sleep for
 * events. It is useful to perform operations that must be done ASAP in
 * reaction to events fired but that are not safe to perform inside event
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 * handlers, or to perform potentially expansive tasks that we need to do
 * a single time before replying to clients. */
2249
void clusterBeforeSleep(void) {
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2250 2251 2252
    /* Handle failover, this is needed when it is likely that there is already
     * the quorum from masters in order to react fast. */
    if (server.cluster->todo_before_sleep & CLUSTER_TODO_HANDLE_FAILOVER)
2253
        clusterHandleSlaveFailover();
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2254 2255 2256 2257 2258 2259 2260 2261 2262

    /* Update the cluster state. */
    if (server.cluster->todo_before_sleep & CLUSTER_TODO_UPDATE_STATE)
        clusterUpdateState();

    /* Save the config, possibly using fsync. */
    if (server.cluster->todo_before_sleep & CLUSTER_TODO_SAVE_CONFIG) {
        int fsync = server.cluster->todo_before_sleep & CLUSTER_TODO_FSYNC_CONFIG;
        clusterSaveConfigOrDie(fsync);
2263
    }
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2264 2265 2266 2267 2268 2269 2270

    /* Reset our flags. */
    server.cluster->todo_before_sleep = 0;
}

void clusterDoBeforeSleep(int flags) {
    server.cluster->todo_before_sleep |= flags;
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2271 2272 2273 2274 2275 2276
}

/* -----------------------------------------------------------------------------
 * Slots management
 * -------------------------------------------------------------------------- */

2277
/* Test bit 'pos' in a generic bitmap. Return 1 if the bit is set,
2278 2279 2280 2281 2282 2283 2284 2285 2286 2287 2288 2289 2290 2291 2292 2293 2294 2295 2296 2297 2298
 * otherwise 0. */
int bitmapTestBit(unsigned char *bitmap, int pos) {
    off_t byte = pos/8;
    int bit = pos&7;
    return (bitmap[byte] & (1<<bit)) != 0;
}

/* Set the bit at position 'pos' in a bitmap. */
void bitmapSetBit(unsigned char *bitmap, int pos) {
    off_t byte = pos/8;
    int bit = pos&7;
    bitmap[byte] |= 1<<bit;
}

/* Clear the bit at position 'pos' in a bitmap. */
void bitmapClearBit(unsigned char *bitmap, int pos) {
    off_t byte = pos/8;
    int bit = pos&7;
    bitmap[byte] &= ~(1<<bit);
}

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2299 2300
/* Set the slot bit and return the old value. */
int clusterNodeSetSlotBit(clusterNode *n, int slot) {
2301 2302
    int old = bitmapTestBit(n->slots,slot);
    bitmapSetBit(n->slots,slot);
2303
    if (!old) n->numslots++;
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    return old;
}

/* Clear the slot bit and return the old value. */
int clusterNodeClearSlotBit(clusterNode *n, int slot) {
2309 2310
    int old = bitmapTestBit(n->slots,slot);
    bitmapClearBit(n->slots,slot);
2311
    if (old) n->numslots--;
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2312 2313 2314 2315 2316
    return old;
}

/* Return the slot bit from the cluster node structure. */
int clusterNodeGetSlotBit(clusterNode *n, int slot) {
2317
    return bitmapTestBit(n->slots,slot);
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2318 2319 2320 2321 2322 2323 2324
}

/* Add the specified slot to the list of slots that node 'n' will
 * serve. Return REDIS_OK if the operation ended with success.
 * If the slot is already assigned to another instance this is considered
 * an error and REDIS_ERR is returned. */
int clusterAddSlot(clusterNode *n, int slot) {
2325 2326
    if (server.cluster->slots[slot]) return REDIS_ERR;
    clusterNodeSetSlotBit(n,slot);
2327
    server.cluster->slots[slot] = n;
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2328 2329 2330
    return REDIS_OK;
}

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2331 2332 2333 2334
/* Delete the specified slot marking it as unassigned.
 * Returns REDIS_OK if the slot was assigned, otherwise if the slot was
 * already unassigned REDIS_ERR is returned. */
int clusterDelSlot(int slot) {
2335
    clusterNode *n = server.cluster->slots[slot];
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2336 2337 2338

    if (!n) return REDIS_ERR;
    redisAssert(clusterNodeClearSlotBit(n,slot) == 1);
2339
    server.cluster->slots[slot] = NULL;
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2340 2341 2342
    return REDIS_OK;
}

2343 2344 2345 2346 2347 2348 2349 2350 2351 2352 2353 2354
/* Delete all the slots associated with the specified node.
 * The number of deleted slots is returned. */
int clusterDelNodeSlots(clusterNode *node) {
    int deleted = 0, j;

    for (j = 0; j < REDIS_CLUSTER_SLOTS; j++) {
        if (clusterNodeGetSlotBit(node,j)) clusterDelSlot(j);
        deleted++;
    }
    return deleted;
}

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/* -----------------------------------------------------------------------------
 * Cluster state evaluation function
 * -------------------------------------------------------------------------- */
2358

2359 2360 2361 2362
/* The following are defines that are only used in the evaluation function
 * and are based on heuristics. Actaully the main point about the rejoin and
 * writable delay is that they should be a few orders of magnitude larger
 * than the network latency. */
2363
#define REDIS_CLUSTER_MAX_REJOIN_DELAY 5000
2364
#define REDIS_CLUSTER_MIN_REJOIN_DELAY 500
2365
#define REDIS_CLUSTER_WRITABLE_DELAY 2000
2366

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void clusterUpdateState(void) {
2368
    int j, new_state;
2369
    int unreachable_masters = 0;
2370
    static mstime_t among_minority_time;
2371 2372 2373 2374 2375 2376 2377 2378 2379
    static mstime_t first_call_time = 0;

    /* If this is a master node, wait some time before turning the state
     * into OK, since it is not a good idea to rejoin the cluster as a writable
     * master, after a reboot, without giving the cluster a chance to
     * reconfigure this node. Note that the delay is calculated starting from
     * the first call to this function and not since the server start, in order
     * to don't count the DB loading time. */
    if (first_call_time == 0) first_call_time = mstime();
2380
    if (nodeIsMaster(myself) &&
2381
        mstime() - first_call_time < REDIS_CLUSTER_WRITABLE_DELAY) return;
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2382

2383 2384
    /* Start assuming the state is OK. We'll turn it into FAIL if there
     * are the right conditions. */
2385
    new_state = REDIS_CLUSTER_OK;
2386

2387
    /* Check if all the slots are covered. */
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2388
    for (j = 0; j < REDIS_CLUSTER_SLOTS; j++) {
2389 2390
        if (server.cluster->slots[j] == NULL ||
            server.cluster->slots[j]->flags & (REDIS_NODE_FAIL))
A
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2391
        {
2392
            new_state = REDIS_CLUSTER_FAIL;
A
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2393 2394 2395
            break;
        }
    }
2396

2397
    /* Compute the cluster size, that is the number of master nodes
2398 2399 2400 2401
     * serving at least a single slot.
     *
     * At the same time count the number of unreachable masters with
     * at least one node. */
2402 2403 2404 2405 2406
    {
        dictIterator *di;
        dictEntry *de;

        server.cluster->size = 0;
2407
        di = dictGetSafeIterator(server.cluster->nodes);
2408 2409 2410
        while((de = dictNext(di)) != NULL) {
            clusterNode *node = dictGetVal(de);

2411
            if (nodeIsMaster(node) && node->numslots) {
2412
                server.cluster->size++;
2413 2414 2415
                if (node->flags & (REDIS_NODE_FAIL|REDIS_NODE_PFAIL))
                    unreachable_masters++;
            }
2416 2417 2418
        }
        dictReleaseIterator(di);
    }
2419

2420
    /* If we can't reach at least half the masters, change the cluster state
2421
     * to FAIL, as we are not even able to mark nodes as FAIL in this side
2422
     * of the netsplit because of lack of majority. */
2423 2424 2425
    {
        int needed_quorum = (server.cluster->size / 2) + 1;
        
2426 2427 2428 2429
        if (unreachable_masters >= needed_quorum) {
            new_state = REDIS_CLUSTER_FAIL;
            among_minority_time = mstime();
        }
2430 2431
    }

2432
    /* Log a state change */
2433 2434 2435 2436 2437 2438 2439 2440 2441
    if (new_state != server.cluster->state) {
        mstime_t rejoin_delay = server.cluster_node_timeout;

        /* If the instance is a master and was partitioned away with the
         * minority, don't let it accept queries for some time after the
         * partition heals, to make sure there is enough time to receive
         * a configuration update. */
        if (rejoin_delay > REDIS_CLUSTER_MAX_REJOIN_DELAY)
            rejoin_delay = REDIS_CLUSTER_MAX_REJOIN_DELAY;
2442 2443
        if (rejoin_delay < REDIS_CLUSTER_MIN_REJOIN_DELAY)
            rejoin_delay = REDIS_CLUSTER_MIN_REJOIN_DELAY;
2444 2445

        if (new_state == REDIS_CLUSTER_OK &&
2446
            nodeIsMaster(myself) &&
2447 2448 2449 2450 2451 2452
            mstime() - among_minority_time < rejoin_delay)
        {
            return;
        }

        /* Change the state and log the event. */
2453
        redisLog(REDIS_WARNING,"Cluster state changed: %s",
2454 2455 2456
            new_state == REDIS_CLUSTER_OK ? "ok" : "fail");
        server.cluster->state = new_state;
    }
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2457 2458
}

2459 2460 2461 2462 2463 2464 2465 2466 2467 2468 2469 2470 2471 2472 2473 2474 2475 2476 2477 2478 2479 2480 2481
/* This function is called after the node startup in order to verify that data
 * loaded from disk is in agreement with the cluster configuration:
 *
 * 1) If we find keys about hash slots we have no responsibility for, the
 *    following happens:
 *    A) If no other node is in charge according to the current cluster
 *       configuration, we add these slots to our node.
 *    B) If according to our config other nodes are already in charge for
 *       this lots, we set the slots as IMPORTING from our point of view
 *       in order to justify we have those slots, and in order to make
 *       redis-trib aware of the issue, so that it can try to fix it.
 * 2) If we find data in a DB different than DB0 we return REDIS_ERR to
 *    signal the caller it should quit the server with an error message
 *    or take other actions.
 *
 * The function always returns REDIS_OK even if it will try to correct
 * the error described in "1". However if data is found in DB different
 * from DB0, REDIS_ERR is returned.
 *
 * The function also uses the logging facility in order to warn the user
 * about desynchronizations between the data we have in memory and the
 * cluster configuration. */
int verifyClusterConfigWithData(void) {
2482 2483 2484
    int j;
    int update_config = 0;

2485 2486
    /* If this node is a slave, don't perform the check at all as we
     * completely depend on the replication stream. */
2487
    if (nodeIsSlave(myself)) return REDIS_OK;
2488

2489 2490 2491 2492 2493 2494 2495 2496 2497 2498 2499 2500
    /* Make sure we only have keys in DB0. */
    for (j = 1; j < server.dbnum; j++) {
        if (dictSize(server.db[j].dict)) return REDIS_ERR;
    }

    /* Check that all the slots we see populated memory have a corresponding
     * entry in the cluster table. Otherwise fix the table. */
    for (j = 0; j < REDIS_CLUSTER_SLOTS; j++) {
        if (!countKeysInSlot(j)) continue; /* No keys in this slot. */
        /* Check if we are assigned to this slot or if we are importing it.
         * In both cases check the next slot as the configuration makes
         * sense. */
2501
        if (server.cluster->slots[j] == myself ||
2502 2503 2504 2505 2506 2507 2508 2509 2510 2511 2512 2513
            server.cluster->importing_slots_from[j] != NULL) continue;

        /* If we are here data and cluster config don't agree, and we have
         * slot 'j' populated even if we are not importing it, nor we are
         * assigned to this slot. Fix this condition. */

        update_config++;
        /* Case A: slot is unassigned. Take responsability for it. */
        if (server.cluster->slots[j] == NULL) {
            redisLog(REDIS_WARNING, "I've keys about slot %d that is "
                                    "unassigned. Taking responsability "
                                    "for it.",j);
2514
            clusterAddSlot(myself,j);
2515 2516 2517 2518 2519 2520 2521
        } else {
            redisLog(REDIS_WARNING, "I've keys about slot %d that is "
                                    "already assigned to a different node. "
                                    "Setting it in importing state.",j);
            server.cluster->importing_slots_from[j] = server.cluster->slots[j];
        }
    }
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2522
    if (update_config) clusterSaveConfigOrDie(1);
2523 2524 2525
    return REDIS_OK;
}

2526 2527 2528 2529
/* -----------------------------------------------------------------------------
 * SLAVE nodes handling
 * -------------------------------------------------------------------------- */

2530 2531
/* Set the specified node 'n' as master. Setup the node as a slave if
 * needed. */
2532 2533
void clusterSetMaster(clusterNode *n) {
    redisAssert(n != myself);
2534
    redisAssert(myself->numslots == 0);
2535

2536
    if (nodeIsMaster(myself)) {
2537 2538
        myself->flags &= ~REDIS_NODE_MASTER;
        myself->flags |= REDIS_NODE_SLAVE;
2539 2540 2541
    } else {
        if (myself->slaveof)
            clusterNodeRemoveSlave(myself->slaveof,myself);
2542 2543
    }
    myself->slaveof = n;
2544
    clusterNodeAddSlave(n,myself);
2545
    replicationSetMaster(n->ip, n->port);
2546 2547
}

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2548 2549 2550 2551
/* -----------------------------------------------------------------------------
 * CLUSTER command
 * -------------------------------------------------------------------------- */

2552 2553 2554 2555 2556 2557 2558 2559 2560 2561 2562 2563 2564 2565 2566 2567 2568 2569 2570 2571 2572 2573 2574 2575 2576 2577 2578 2579 2580 2581 2582 2583 2584 2585 2586 2587 2588 2589 2590 2591 2592 2593 2594 2595 2596 2597 2598 2599 2600 2601 2602 2603 2604 2605 2606 2607 2608 2609 2610 2611 2612 2613 2614 2615 2616 2617 2618 2619 2620 2621 2622 2623 2624 2625 2626 2627
/* Generate a csv-alike representation of the specified cluster node.
 * See clusterGenNodesDescription() top comment for more information.
 *
 * The function returns the string representation as an SDS string. */
sds clusterGenNodeDescription(clusterNode *node) {
    int j, start;
    sds ci;

    /* Node coordinates */
    ci = sdscatprintf(sdsempty(),"%.40s %s:%d ",
        node->name,
        node->ip,
        node->port);

    /* Flags */
    if (node->flags == 0) ci = sdscat(ci,"noflags,");
    if (node->flags & REDIS_NODE_MYSELF) ci = sdscat(ci,"myself,");
    if (node->flags & REDIS_NODE_MASTER) ci = sdscat(ci,"master,");
    if (node->flags & REDIS_NODE_SLAVE) ci = sdscat(ci,"slave,");
    if (node->flags & REDIS_NODE_PFAIL) ci = sdscat(ci,"fail?,");
    if (node->flags & REDIS_NODE_FAIL) ci = sdscat(ci,"fail,");
    if (node->flags & REDIS_NODE_HANDSHAKE) ci =sdscat(ci,"handshake,");
    if (node->flags & REDIS_NODE_NOADDR) ci = sdscat(ci,"noaddr,");
    if (ci[sdslen(ci)-1] == ',') ci[sdslen(ci)-1] = ' ';

    /* Slave of... or just "-" */
    if (node->slaveof)
        ci = sdscatprintf(ci,"%.40s ",node->slaveof->name);
    else
        ci = sdscatprintf(ci,"- ");

    /* Latency from the POV of this node, link status */
    ci = sdscatprintf(ci,"%lld %lld %llu %s",
        (long long) node->ping_sent,
        (long long) node->pong_received,
        (unsigned long long) node->configEpoch,
        (node->link || node->flags & REDIS_NODE_MYSELF) ?
                    "connected" : "disconnected");

    /* Slots served by this instance */
    start = -1;
    for (j = 0; j < REDIS_CLUSTER_SLOTS; j++) {
        int bit;

        if ((bit = clusterNodeGetSlotBit(node,j)) != 0) {
            if (start == -1) start = j;
        }
        if (start != -1 && (!bit || j == REDIS_CLUSTER_SLOTS-1)) {
            if (j == REDIS_CLUSTER_SLOTS-1) j++;

            if (start == j-1) {
                ci = sdscatprintf(ci," %d",start);
            } else {
                ci = sdscatprintf(ci," %d-%d",start,j-1);
            }
            start = -1;
        }
    }

    /* Just for MYSELF node we also dump info about slots that
     * we are migrating to other instances or importing from other
     * instances. */
    if (node->flags & REDIS_NODE_MYSELF) {
        for (j = 0; j < REDIS_CLUSTER_SLOTS; j++) {
            if (server.cluster->migrating_slots_to[j]) {
                ci = sdscatprintf(ci," [%d->-%.40s]",j,
                    server.cluster->migrating_slots_to[j]->name);
            } else if (server.cluster->importing_slots_from[j]) {
                ci = sdscatprintf(ci," [%d-<-%.40s]",j,
                    server.cluster->importing_slots_from[j]->name);
            }
        }
    }
    return ci;
}

2628 2629 2630 2631 2632 2633 2634 2635 2636 2637 2638 2639 2640
/* Generate a csv-alike representation of the nodes we are aware of,
 * including the "myself" node, and return an SDS string containing the
 * representation (it is up to the caller to free it).
 *
 * All the nodes matching at least one of the node flags specified in
 * "filter" are excluded from the output, so using zero as a filter will
 * include all the known nodes in the representation, including nodes in
 * the HANDSHAKE state.
 *
 * The representation obtained using this function is used for the output
 * of the CLUSTER NODES function, and as format for the cluster
 * configuration file (nodes.conf) for a given node. */
sds clusterGenNodesDescription(int filter) {
2641
    sds ci = sdsempty(), ni;
A
antirez 已提交
2642 2643 2644
    dictIterator *di;
    dictEntry *de;

2645
    di = dictGetSafeIterator(server.cluster->nodes);
A
antirez 已提交
2646
    while((de = dictNext(di)) != NULL) {
2647
        clusterNode *node = dictGetVal(de);
A
antirez 已提交
2648

2649
        if (node->flags & filter) continue;
2650 2651 2652
        ni = clusterGenNodeDescription(node);
        ci = sdscatsds(ci,ni);
        sdsfree(ni);
2653
        ci = sdscatlen(ci,"\n",1);
A
antirez 已提交
2654 2655 2656 2657 2658
    }
    dictReleaseIterator(di);
    return ci;
}

2659 2660 2661 2662
int getSlotOrReply(redisClient *c, robj *o) {
    long long slot;

    if (getLongLongFromObject(o,&slot) != REDIS_OK ||
2663
        slot < 0 || slot >= REDIS_CLUSTER_SLOTS)
2664 2665 2666 2667 2668 2669 2670
    {
        addReplyError(c,"Invalid or out of range slot");
        return -1;
    }
    return (int) slot;
}

A
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2671 2672 2673 2674 2675 2676 2677 2678 2679
void clusterCommand(redisClient *c) {
    if (server.cluster_enabled == 0) {
        addReplyError(c,"This instance has cluster support disabled");
        return;
    }

    if (!strcasecmp(c->argv[1]->ptr,"meet") && c->argc == 4) {
        long port;

2680
        if (getLongFromObjectOrReply(c, c->argv[3], &port, NULL) != REDIS_OK) {
A
antirez 已提交
2681 2682 2683 2684
            addReplyError(c,"Invalid TCP port specified");
            return;
        }

2685 2686 2687 2688 2689 2690 2691
        if (clusterStartHandshake(c->argv[2]->ptr,port) == 0 &&
            errno == EINVAL)
        {
            addReplyError(c,"Invalid node address specified");
        } else {
            addReply(c,shared.ok);
        }
A
antirez 已提交
2692
    } else if (!strcasecmp(c->argv[1]->ptr,"nodes") && c->argc == 2) {
2693
        /* CLUSTER NODES */
A
antirez 已提交
2694
        robj *o;
2695
        sds ci = clusterGenNodesDescription(0);
A
antirez 已提交
2696 2697 2698 2699

        o = createObject(REDIS_STRING,ci);
        addReplyBulk(c,o);
        decrRefCount(o);
2700 2701 2702 2703 2704 2705
    } else if (!strcasecmp(c->argv[1]->ptr,"flushslots") && c->argc == 2) {
        /* CLUSTER FLUSHSLOTS */
        if (dictSize(server.db[0].dict) != 0) {
            addReplyError(c,"DB must be empty to perform CLUSTER FLUSHSLOTS.");
            return;
        }
2706
        clusterDelNodeSlots(myself);
A
antirez 已提交
2707
        clusterDoBeforeSleep(CLUSTER_TODO_UPDATE_STATE|CLUSTER_TODO_SAVE_CONFIG);
2708
        addReply(c,shared.ok);
A
antirez 已提交
2709
    } else if ((!strcasecmp(c->argv[1]->ptr,"addslots") ||
A
antirez 已提交
2710 2711 2712 2713
               !strcasecmp(c->argv[1]->ptr,"delslots")) && c->argc >= 3)
    {
        /* CLUSTER ADDSLOTS <slot> [slot] ... */
        /* CLUSTER DELSLOTS <slot> [slot] ... */
2714
        int j, slot;
A
antirez 已提交
2715
        unsigned char *slots = zmalloc(REDIS_CLUSTER_SLOTS);
A
antirez 已提交
2716
        int del = !strcasecmp(c->argv[1]->ptr,"delslots");
A
antirez 已提交
2717 2718 2719 2720 2721

        memset(slots,0,REDIS_CLUSTER_SLOTS);
        /* Check that all the arguments are parsable and that all the
         * slots are not already busy. */
        for (j = 2; j < c->argc; j++) {
2722
            if ((slot = getSlotOrReply(c,c->argv[j])) == -1) {
A
antirez 已提交
2723 2724 2725
                zfree(slots);
                return;
            }
2726
            if (del && server.cluster->slots[slot] == NULL) {
2727
                addReplyErrorFormat(c,"Slot %d is already unassigned", slot);
A
antirez 已提交
2728 2729
                zfree(slots);
                return;
2730
            } else if (!del && server.cluster->slots[slot]) {
2731
                addReplyErrorFormat(c,"Slot %d is already busy", slot);
A
antirez 已提交
2732 2733 2734 2735 2736 2737 2738 2739 2740 2741 2742 2743
                zfree(slots);
                return;
            }
            if (slots[slot]++ == 1) {
                addReplyErrorFormat(c,"Slot %d specified multiple times",
                    (int)slot);
                zfree(slots);
                return;
            }
        }
        for (j = 0; j < REDIS_CLUSTER_SLOTS; j++) {
            if (slots[j]) {
2744 2745 2746 2747
                int retval;

                /* If this slot was set as importing we can clear this 
                 * state as now we are the real owner of the slot. */
2748 2749
                if (server.cluster->importing_slots_from[j])
                    server.cluster->importing_slots_from[j] = NULL;
2750 2751

                retval = del ? clusterDelSlot(j) :
2752
                               clusterAddSlot(myself,j);
2753
                redisAssertWithInfo(c,NULL,retval == REDIS_OK);
A
antirez 已提交
2754 2755 2756
            }
        }
        zfree(slots);
A
antirez 已提交
2757
        clusterDoBeforeSleep(CLUSTER_TODO_UPDATE_STATE|CLUSTER_TODO_SAVE_CONFIG);
A
antirez 已提交
2758
        addReply(c,shared.ok);
2759
    } else if (!strcasecmp(c->argv[1]->ptr,"setslot") && c->argc >= 4) {
A
antirez 已提交
2760 2761
        /* SETSLOT 10 MIGRATING <node ID> */
        /* SETSLOT 10 IMPORTING <node ID> */
2762
        /* SETSLOT 10 STABLE */
A
antirez 已提交
2763
        /* SETSLOT 10 NODE <node ID> */
2764
        int slot;
2765 2766
        clusterNode *n;

2767 2768
        if ((slot = getSlotOrReply(c,c->argv[2])) == -1) return;

2769
        if (!strcasecmp(c->argv[3]->ptr,"migrating") && c->argc == 5) {
2770
            if (server.cluster->slots[slot] != myself) {
2771 2772 2773
                addReplyErrorFormat(c,"I'm not the owner of hash slot %u",slot);
                return;
            }
2774 2775 2776 2777 2778
            if ((n = clusterLookupNode(c->argv[4]->ptr)) == NULL) {
                addReplyErrorFormat(c,"I don't know about node %s",
                    (char*)c->argv[4]->ptr);
                return;
            }
2779
            server.cluster->migrating_slots_to[slot] = n;
2780
        } else if (!strcasecmp(c->argv[3]->ptr,"importing") && c->argc == 5) {
2781
            if (server.cluster->slots[slot] == myself) {
2782 2783 2784 2785
                addReplyErrorFormat(c,
                    "I'm already the owner of hash slot %u",slot);
                return;
            }
2786 2787 2788 2789 2790
            if ((n = clusterLookupNode(c->argv[4]->ptr)) == NULL) {
                addReplyErrorFormat(c,"I don't know about node %s",
                    (char*)c->argv[3]->ptr);
                return;
            }
2791
            server.cluster->importing_slots_from[slot] = n;
2792
        } else if (!strcasecmp(c->argv[3]->ptr,"stable") && c->argc == 4) {
2793
            /* CLUSTER SETSLOT <SLOT> STABLE */
2794 2795
            server.cluster->importing_slots_from[slot] = NULL;
            server.cluster->migrating_slots_to[slot] = NULL;
2796
        } else if (!strcasecmp(c->argv[3]->ptr,"node") && c->argc == 5) {
2797 2798 2799
            /* CLUSTER SETSLOT <SLOT> NODE <NODE ID> */
            clusterNode *n = clusterLookupNode(c->argv[4]->ptr);

2800 2801 2802 2803 2804
            if (!n) {
                addReplyErrorFormat(c,"Unknown node %s",
                    (char*)c->argv[4]->ptr);
                return;
            }
2805 2806
            /* If this hash slot was served by 'myself' before to switch
             * make sure there are no longer local keys for this hash slot. */
2807
            if (server.cluster->slots[slot] == myself && n != myself) {
2808
                if (countKeysInSlot(slot) != 0) {
2809 2810 2811 2812
                    addReplyErrorFormat(c, "Can't assign hashslot %d to a different node while I still hold keys for this hash slot.", slot);
                    return;
                }
            }
2813 2814 2815
            /* If this node was the slot owner and the slot was marked as
             * migrating, assigning the slot to another node will clear
             * the migratig status. */
2816
            if (server.cluster->slots[slot] == myself &&
2817 2818
                server.cluster->migrating_slots_to[slot])
                server.cluster->migrating_slots_to[slot] = NULL;
2819

2820 2821
            /* If this node was importing this slot, assigning the slot to
             * itself also clears the importing status. */
2822
            if (n == myself &&
2823
                server.cluster->importing_slots_from[slot])
2824
                server.cluster->importing_slots_from[slot] = NULL;
2825 2826
            clusterDelSlot(slot);
            clusterAddSlot(n,slot);
2827 2828
        } else {
            addReplyError(c,"Invalid CLUSTER SETSLOT action or number of arguments");
2829
            return;
2830
        }
A
antirez 已提交
2831
        clusterDoBeforeSleep(CLUSTER_TODO_UPDATE_STATE|CLUSTER_TODO_SAVE_CONFIG);
2832
        addReply(c,shared.ok);
A
antirez 已提交
2833
    } else if (!strcasecmp(c->argv[1]->ptr,"info") && c->argc == 2) {
2834
        /* CLUSTER INFO */
A
antirez 已提交
2835 2836 2837 2838 2839
        char *statestr[] = {"ok","fail","needhelp"};
        int slots_assigned = 0, slots_ok = 0, slots_pfail = 0, slots_fail = 0;
        int j;

        for (j = 0; j < REDIS_CLUSTER_SLOTS; j++) {
2840
            clusterNode *n = server.cluster->slots[j];
A
antirez 已提交
2841 2842 2843

            if (n == NULL) continue;
            slots_assigned++;
2844
            if (nodeFailed(n)) {
A
antirez 已提交
2845
                slots_fail++;
2846
            } else if (nodeTimedOut(n)) {
A
antirez 已提交
2847 2848 2849 2850 2851 2852 2853 2854 2855 2856 2857 2858
                slots_pfail++;
            } else {
                slots_ok++;
            }
        }

        sds info = sdscatprintf(sdsempty(),
            "cluster_state:%s\r\n"
            "cluster_slots_assigned:%d\r\n"
            "cluster_slots_ok:%d\r\n"
            "cluster_slots_pfail:%d\r\n"
            "cluster_slots_fail:%d\r\n"
2859
            "cluster_known_nodes:%lu\r\n"
2860
            "cluster_size:%d\r\n"
2861
            "cluster_current_epoch:%llu\r\n"
2862 2863
            "cluster_stats_messages_sent:%lld\r\n"
            "cluster_stats_messages_received:%lld\r\n"
2864
            , statestr[server.cluster->state],
A
antirez 已提交
2865 2866 2867
            slots_assigned,
            slots_ok,
            slots_pfail,
2868
            slots_fail,
2869
            dictSize(server.cluster->nodes),
2870
            server.cluster->size,
2871 2872 2873
            (unsigned long long) server.cluster->currentEpoch,
            server.cluster->stats_bus_messages_sent,
            server.cluster->stats_bus_messages_received
A
antirez 已提交
2874 2875 2876 2877 2878
        );
        addReplySds(c,sdscatprintf(sdsempty(),"$%lu\r\n",
            (unsigned long)sdslen(info)));
        addReplySds(c,info);
        addReply(c,shared.crlf);
2879
    } else if (!strcasecmp(c->argv[1]->ptr,"saveconfig") && c->argc == 2) {
A
antirez 已提交
2880
        int retval = clusterSaveConfig(1);
2881 2882 2883 2884 2885 2886

        if (retval == 0)
            addReply(c,shared.ok);
        else
            addReplyErrorFormat(c,"error saving the cluster node config: %s",
                strerror(errno));
A
antirez 已提交
2887
    } else if (!strcasecmp(c->argv[1]->ptr,"keyslot") && c->argc == 3) {
2888
        /* CLUSTER KEYSLOT <key> */
A
antirez 已提交
2889 2890 2891
        sds key = c->argv[2]->ptr;

        addReplyLongLong(c,keyHashSlot(key,sdslen(key)));
2892
    } else if (!strcasecmp(c->argv[1]->ptr,"countkeysinslot") && c->argc == 3) {
2893
        /* CLUSTER COUNTKEYSINSLOT <slot> */
2894 2895 2896 2897
        long long slot;

        if (getLongLongFromObjectOrReply(c,c->argv[2],&slot,NULL) != REDIS_OK)
            return;
2898 2899 2900 2901
        if (slot < 0 || slot >= REDIS_CLUSTER_SLOTS) {
            addReplyError(c,"Invalid slot");
            return;
        }
2902
        addReplyLongLong(c,countKeysInSlot(slot));
A
antirez 已提交
2903
    } else if (!strcasecmp(c->argv[1]->ptr,"getkeysinslot") && c->argc == 4) {
2904
        /* CLUSTER GETKEYSINSLOT <slot> <count> */
A
antirez 已提交
2905
        long long maxkeys, slot;
2906
        unsigned int numkeys, j;
A
antirez 已提交
2907 2908 2909 2910 2911 2912
        robj **keys;

        if (getLongLongFromObjectOrReply(c,c->argv[2],&slot,NULL) != REDIS_OK)
            return;
        if (getLongLongFromObjectOrReply(c,c->argv[3],&maxkeys,NULL) != REDIS_OK)
            return;
2913
        if (slot < 0 || slot >= REDIS_CLUSTER_SLOTS || maxkeys < 0) {
A
antirez 已提交
2914 2915 2916 2917 2918
            addReplyError(c,"Invalid slot or number of keys");
            return;
        }

        keys = zmalloc(sizeof(robj*)*maxkeys);
2919
        numkeys = getKeysInSlot(slot, keys, maxkeys);
A
antirez 已提交
2920 2921 2922
        addReplyMultiBulkLen(c,numkeys);
        for (j = 0; j < numkeys; j++) addReplyBulk(c,keys[j]);
        zfree(keys);
A
antirez 已提交
2923 2924 2925 2926
    } else if (!strcasecmp(c->argv[1]->ptr,"forget") && c->argc == 3) {
        /* CLUSTER FORGET <NODE ID> */
        clusterNode *n = clusterLookupNode(c->argv[2]->ptr);

2927
        if (!n) {
A
antirez 已提交
2928 2929
            addReplyErrorFormat(c,"Unknown node %s", (char*)c->argv[2]->ptr);
            return;
2930
        } else if (n == myself) {
2931 2932
            addReplyError(c,"I tried hard but I can't forget myself...");
            return;
2933
        } else if (nodeIsSlave(myself) && myself->slaveof == n) {
2934 2935
            addReplyError(c,"Can't forget my master!");
            return;
A
antirez 已提交
2936
        }
2937
        clusterBlacklistAddNode(n);
A
antirez 已提交
2938
        clusterDelNode(n);
A
antirez 已提交
2939
        clusterDoBeforeSleep(CLUSTER_TODO_UPDATE_STATE|CLUSTER_TODO_SAVE_CONFIG);
A
antirez 已提交
2940
        addReply(c,shared.ok);
2941 2942 2943 2944 2945 2946 2947 2948 2949 2950 2951
    } else if (!strcasecmp(c->argv[1]->ptr,"replicate") && c->argc == 3) {
        /* CLUSTER REPLICATE <NODE ID> */
        clusterNode *n = clusterLookupNode(c->argv[2]->ptr);

        /* Lookup the specified node in our table. */
        if (!n) {
            addReplyErrorFormat(c,"Unknown node %s", (char*)c->argv[2]->ptr);
            return;
        }

        /* I can't replicate myself. */
2952
        if (n == myself) {
2953 2954 2955 2956 2957 2958 2959 2960 2961 2962
            addReplyError(c,"Can't replicate myself");
            return;
        }

        /* Can't replicate a slave. */
        if (n->slaveof != NULL) {
            addReplyError(c,"I can only replicate a master, not a slave.");
            return;
        }

2963 2964 2965
        /* If the instance is currently a master, it should have no assigned
         * slots nor keys to accept to replicate some other node.
         * Slaves can switch to another master without issues. */
2966 2967
        if (nodeIsMaster(myself) &&
            (myself->numslots != 0 || dictSize(server.db[0].dict) != 0)) {
2968 2969 2970 2971 2972 2973
            addReplyError(c,"To set a master the node must be empty and without assigned slots.");
            return;
        }

        /* Set the master. */
        clusterSetMaster(n);
A
antirez 已提交
2974
        clusterDoBeforeSleep(CLUSTER_TODO_UPDATE_STATE|CLUSTER_TODO_SAVE_CONFIG);
2975
        addReply(c,shared.ok);
2976 2977 2978 2979 2980 2981 2982 2983 2984 2985 2986
    } else if (!strcasecmp(c->argv[1]->ptr,"slaves") && c->argc == 3) {
        /* CLUSTER SLAVES <NODE ID> */
        clusterNode *n = clusterLookupNode(c->argv[2]->ptr);
        int j;

        /* Lookup the specified node in our table. */
        if (!n) {
            addReplyErrorFormat(c,"Unknown node %s", (char*)c->argv[2]->ptr);
            return;
        }

2987
        if (nodeIsSlave(n)) {
2988 2989 2990 2991 2992 2993 2994 2995 2996 2997
            addReplyError(c,"The specified node is not a master");
            return;
        }

        addReplyMultiBulkLen(c,n->numslaves);
        for (j = 0; j < n->numslaves; j++) {
            sds ni = clusterGenNodeDescription(n->slaves[j]);
            addReplyBulkCString(c,ni);
            sdsfree(ni);
        }
A
antirez 已提交
2998 2999 3000 3001 3002 3003
    } else {
        addReplyError(c,"Wrong CLUSTER subcommand or number of arguments");
    }
}

/* -----------------------------------------------------------------------------
3004
 * DUMP, RESTORE and MIGRATE commands
A
antirez 已提交
3005 3006
 * -------------------------------------------------------------------------- */

3007 3008 3009
/* Generates a DUMP-format representation of the object 'o', adding it to the
 * io stream pointed by 'rio'. This function can't fail. */
void createDumpPayload(rio *payload, robj *o) {
3010 3011
    unsigned char buf[2];
    uint64_t crc;
3012 3013 3014 3015 3016 3017 3018 3019

    /* Serialize the object in a RDB-like format. It consist of an object type
     * byte followed by the serialized object. This is understood by RESTORE. */
    rioInitWithBuffer(payload,sdsempty());
    redisAssert(rdbSaveObjectType(payload,o));
    redisAssert(rdbSaveObject(payload,o));

    /* Write the footer, this is how it looks like:
3020 3021 3022 3023 3024
     * ----------------+---------------------+---------------+
     * ... RDB payload | 2 bytes RDB version | 8 bytes CRC64 |
     * ----------------+---------------------+---------------+
     * RDB version and CRC are both in little endian.
     */
3025 3026

    /* RDB version */
3027 3028
    buf[0] = REDIS_RDB_VERSION & 0xff;
    buf[1] = (REDIS_RDB_VERSION >> 8) & 0xff;
3029 3030
    payload->io.buffer.ptr = sdscatlen(payload->io.buffer.ptr,buf,2);

3031
    /* CRC64 */
3032
    crc = crc64(0,(unsigned char*)payload->io.buffer.ptr,
3033 3034 3035
                sdslen(payload->io.buffer.ptr));
    memrev64ifbe(&crc);
    payload->io.buffer.ptr = sdscatlen(payload->io.buffer.ptr,&crc,8);
3036 3037 3038
}

/* Verify that the RDB version of the dump payload matches the one of this Redis
3039
 * instance and that the checksum is ok.
3040 3041 3042
 * If the DUMP payload looks valid REDIS_OK is returned, otherwise REDIS_ERR
 * is returned. */
int verifyDumpPayload(unsigned char *p, size_t len) {
3043
    unsigned char *footer;
3044
    uint16_t rdbver;
3045
    uint64_t crc;
3046

3047
    /* At least 2 bytes of RDB version and 8 of CRC64 should be present. */
3048 3049
    if (len < 10) return REDIS_ERR;
    footer = p+(len-10);
3050 3051

    /* Verify RDB version */
3052
    rdbver = (footer[1] << 8) | footer[0];
3053
    if (rdbver != REDIS_RDB_VERSION) return REDIS_ERR;
3054

3055
    /* Verify CRC64 */
3056
    crc = crc64(0,p,len-8);
3057 3058
    memrev64ifbe(&crc);
    return (memcmp(&crc,footer+2,8) == 0) ? REDIS_OK : REDIS_ERR;
3059 3060 3061 3062 3063 3064 3065 3066 3067 3068 3069 3070 3071 3072 3073 3074 3075 3076 3077 3078 3079 3080 3081 3082 3083
}

/* DUMP keyname
 * DUMP is actually not used by Redis Cluster but it is the obvious
 * complement of RESTORE and can be useful for different applications. */
void dumpCommand(redisClient *c) {
    robj *o, *dumpobj;
    rio payload;

    /* Check if the key is here. */
    if ((o = lookupKeyRead(c->db,c->argv[1])) == NULL) {
        addReply(c,shared.nullbulk);
        return;
    }

    /* Create the DUMP encoded representation. */
    createDumpPayload(&payload,o);

    /* Transfer to the client */
    dumpobj = createObject(REDIS_STRING,payload.io.buffer.ptr);
    addReplyBulk(c,dumpobj);
    decrRefCount(dumpobj);
    return;
}

A
antirez 已提交
3084
/* RESTORE key ttl serialized-value [REPLACE] */
A
antirez 已提交
3085
void restoreCommand(redisClient *c) {
3086
    long long ttl;
3087
    rio payload;
A
antirez 已提交
3088
    int j, type, replace = 0;
3089
    robj *obj;
A
antirez 已提交
3090

A
antirez 已提交
3091 3092 3093 3094 3095 3096 3097 3098 3099 3100
    /* Parse additional options */
    for (j = 4; j < c->argc; j++) {
        if (!strcasecmp(c->argv[j]->ptr,"replace")) {
            replace = 1;
        } else {
            addReply(c,shared.syntaxerr);
            return;
        }
    }

A
antirez 已提交
3101
    /* Make sure this key does not already exist here... */
A
antirez 已提交
3102
    if (!replace && lookupKeyWrite(c->db,c->argv[1]) != NULL) {
A
antirez 已提交
3103 3104 3105 3106 3107
        addReplyError(c,"Target key name is busy.");
        return;
    }

    /* Check if the TTL value makes sense */
3108
    if (getLongLongFromObjectOrReply(c,c->argv[2],&ttl,NULL) != REDIS_OK) {
A
antirez 已提交
3109 3110 3111 3112 3113 3114
        return;
    } else if (ttl < 0) {
        addReplyError(c,"Invalid TTL value, must be >= 0");
        return;
    }

3115
    /* Verify RDB version and data checksum. */
3116 3117
    if (verifyDumpPayload(c->argv[3]->ptr,sdslen(c->argv[3]->ptr)) == REDIS_ERR)
    {
3118 3119 3120 3121
        addReplyError(c,"DUMP payload version or checksum are wrong");
        return;
    }

3122
    rioInitWithBuffer(&payload,c->argv[3]->ptr);
3123 3124
    if (((type = rdbLoadObjectType(&payload)) == -1) ||
        ((obj = rdbLoadObject(type,&payload)) == NULL))
3125
    {
3126
        addReplyError(c,"Bad data format");
A
antirez 已提交
3127 3128 3129
        return;
    }

A
antirez 已提交
3130 3131 3132
    /* Remove the old key if needed. */
    if (replace) dbDelete(c->db,c->argv[1]);

A
antirez 已提交
3133
    /* Create the key and set the TTL if any */
3134
    dbAdd(c->db,c->argv[1],obj);
3135
    if (ttl) setExpire(c->db,c->argv[1],mstime()+ttl);
3136
    signalModifiedKey(c->db,c->argv[1]);
A
antirez 已提交
3137
    addReply(c,shared.ok);
3138
    server.dirty++;
A
antirez 已提交
3139 3140
}

A
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/* MIGRATE socket cache implementation.
 *
 * We take a map between host:ip and a TCP socket that we used to connect
 * to this instance in recent time.
 * This sockets are closed when the max number we cache is reached, and also
 * in serverCron() when they are around for more than a few seconds. */
#define MIGRATE_SOCKET_CACHE_ITEMS 64 /* max num of items in the cache. */
#define MIGRATE_SOCKET_CACHE_TTL 10 /* close cached socekts after 10 sec. */

typedef struct migrateCachedSocket {
    int fd;
    time_t last_use_time;
} migrateCachedSocket;

/* Return a TCP scoket connected with the target instance, possibly returning
 * a cached one.
 *
 * This function is responsible of sending errors to the client if a
 * connection can't be established. In this case -1 is returned.
 * Otherwise on success the socket is returned, and the caller should not
 * attempt to free it after usage.
 *
 * If the caller detects an error while using the socket, migrateCloseSocket()
 * should be called so that the connection will be craeted from scratch
 * the next time. */
int migrateGetSocket(redisClient *c, robj *host, robj *port, long timeout) {
    int fd;
    sds name = sdsempty();
    migrateCachedSocket *cs;

    /* Check if we have an already cached socket for this ip:port pair. */
    name = sdscatlen(name,host->ptr,sdslen(host->ptr));
    name = sdscatlen(name,":",1);
    name = sdscatlen(name,port->ptr,sdslen(port->ptr));
    cs = dictFetchValue(server.migrate_cached_sockets,name);
    if (cs) {
        sdsfree(name);
        cs->last_use_time = server.unixtime;
        return cs->fd;
    }

    /* No cached socket, create one. */
    if (dictSize(server.migrate_cached_sockets) == MIGRATE_SOCKET_CACHE_ITEMS) {
        /* Too many items, drop one at random. */
        dictEntry *de = dictGetRandomKey(server.migrate_cached_sockets);
        cs = dictGetVal(de);
        close(cs->fd);
        zfree(cs);
        dictDelete(server.migrate_cached_sockets,dictGetKey(de));
    }

    /* Create the socket */
    fd = anetTcpNonBlockConnect(server.neterr,c->argv[1]->ptr,
                atoi(c->argv[2]->ptr));
    if (fd == -1) {
        sdsfree(name);
        addReplyErrorFormat(c,"Can't connect to target node: %s",
            server.neterr);
        return -1;
    }
3201
    anetEnableTcpNoDelay(server.neterr,fd);
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    /* Check if it connects within the specified timeout. */
3204
    if ((aeWait(fd,AE_WRITABLE,timeout) & AE_WRITABLE) == 0) {
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        sdsfree(name);
        addReplySds(c,sdsnew("-IOERR error or timeout connecting to the client\r\n"));
        close(fd);
        return -1;
    }

    /* Add to the cache and return it to the caller. */
    cs = zmalloc(sizeof(*cs));
    cs->fd = fd;
    cs->last_use_time = server.unixtime;
    dictAdd(server.migrate_cached_sockets,name,cs);
    return fd;
}

/* Free a migrate cached connection. */
void migrateCloseSocket(robj *host, robj *port) {
    sds name = sdsempty();
    migrateCachedSocket *cs;

    name = sdscatlen(name,host->ptr,sdslen(host->ptr));
    name = sdscatlen(name,":",1);
    name = sdscatlen(name,port->ptr,sdslen(port->ptr));
    cs = dictFetchValue(server.migrate_cached_sockets,name);
    if (!cs) {
        sdsfree(name);
        return;
    }

    close(cs->fd);
    zfree(cs);
    dictDelete(server.migrate_cached_sockets,name);
    sdsfree(name);
}

void migrateCloseTimedoutSockets(void) {
    dictIterator *di = dictGetSafeIterator(server.migrate_cached_sockets);
    dictEntry *de;

    while((de = dictNext(di)) != NULL) {
        migrateCachedSocket *cs = dictGetVal(de);

        if ((server.unixtime - cs->last_use_time) > MIGRATE_SOCKET_CACHE_TTL) {
            close(cs->fd);
            zfree(cs);
            dictDelete(server.migrate_cached_sockets,dictGetKey(de));
        }
    }
    dictReleaseIterator(di);
}

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/* MIGRATE host port key dbid timeout [COPY | REPLACE] */
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void migrateCommand(redisClient *c) {
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    int fd, copy, replace, j;
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    long timeout;
    long dbid;
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    long long ttl, expireat;
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    robj *o;
3262
    rio cmd, payload;
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    int retry_num = 0;

try_again:
    /* Initialization */
    copy = 0;
    replace = 0;
    ttl = 0;
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    /* Parse additional options */
    for (j = 6; j < c->argc; j++) {
        if (!strcasecmp(c->argv[j]->ptr,"copy")) {
            copy = 1;
        } else if (!strcasecmp(c->argv[j]->ptr,"replace")) {
            replace = 1;
        } else {
            addReply(c,shared.syntaxerr);
            return;
        }
    }

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    /* Sanity check */
    if (getLongFromObjectOrReply(c,c->argv[5],&timeout,NULL) != REDIS_OK)
        return;
    if (getLongFromObjectOrReply(c,c->argv[4],&dbid,NULL) != REDIS_OK)
        return;
3288
    if (timeout <= 0) timeout = 1000;
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    /* Check if the key is here. If not we reply with success as there is
     * nothing to migrate (for instance the key expired in the meantime), but
     * we include such information in the reply string. */
    if ((o = lookupKeyRead(c->db,c->argv[3])) == NULL) {
3294
        addReplySds(c,sdsnew("+NOKEY\r\n"));
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        return;
    }
    
    /* Connect */
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    fd = migrateGetSocket(c,c->argv[1],c->argv[2],timeout);
    if (fd == -1) return; /* error sent to the client by migrateGetSocket() */
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3302
    /* Create RESTORE payload and generate the protocol to call the command. */
3303
    rioInitWithBuffer(&cmd,sdsempty());
3304 3305 3306
    redisAssertWithInfo(c,NULL,rioWriteBulkCount(&cmd,'*',2));
    redisAssertWithInfo(c,NULL,rioWriteBulkString(&cmd,"SELECT",6));
    redisAssertWithInfo(c,NULL,rioWriteBulkLongLong(&cmd,dbid));
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    expireat = getExpire(c->db,c->argv[3]);
    if (expireat != -1) {
        ttl = expireat-mstime();
        if (ttl < 1) ttl = 1;
    }
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    redisAssertWithInfo(c,NULL,rioWriteBulkCount(&cmd,'*',replace ? 5 : 4));
3314 3315 3316 3317 3318
    if (server.cluster_enabled)
        redisAssertWithInfo(c,NULL,
            rioWriteBulkString(&cmd,"RESTORE-ASKING",14));
    else
        redisAssertWithInfo(c,NULL,rioWriteBulkString(&cmd,"RESTORE",7));
3319
    redisAssertWithInfo(c,NULL,sdsEncodedObject(c->argv[3]));
3320
    redisAssertWithInfo(c,NULL,rioWriteBulkString(&cmd,c->argv[3]->ptr,sdslen(c->argv[3]->ptr)));
3321
    redisAssertWithInfo(c,NULL,rioWriteBulkLongLong(&cmd,ttl));
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    /* Emit the payload argument, that is the serialized object using
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     * the DUMP format. */
3325 3326 3327
    createDumpPayload(&payload,o);
    redisAssertWithInfo(c,NULL,rioWriteBulkString(&cmd,payload.io.buffer.ptr,
                                sdslen(payload.io.buffer.ptr)));
3328 3329
    sdsfree(payload.io.buffer.ptr);

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    /* Add the REPLACE option to the RESTORE command if it was specified
     * as a MIGRATE option. */
    if (replace)
        redisAssertWithInfo(c,NULL,rioWriteBulkString(&cmd,"REPLACE",7));

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    /* Transfer the query to the other node in 64K chunks. */
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    errno = 0;
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    {
3338 3339 3340 3341 3342 3343
        sds buf = cmd.io.buffer.ptr;
        size_t pos = 0, towrite;
        int nwritten = 0;

        while ((towrite = sdslen(buf)-pos) > 0) {
            towrite = (towrite > (64*1024) ? (64*1024) : towrite);
3344
            nwritten = syncWrite(fd,buf+pos,towrite,timeout);
3345 3346
            if (nwritten != (signed)towrite) goto socket_wr_err;
            pos += nwritten;
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        }
    }

3350
    /* Read back the reply. */
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    {
        char buf1[1024];
        char buf2[1024];

        /* Read the two replies */
        if (syncReadLine(fd, buf1, sizeof(buf1), timeout) <= 0)
            goto socket_rd_err;
        if (syncReadLine(fd, buf2, sizeof(buf2), timeout) <= 0)
3359
            goto socket_rd_err;
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        if (buf1[0] == '-' || buf2[0] == '-') {
            addReplyErrorFormat(c,"Target instance replied with error: %s",
                (buf1[0] == '-') ? buf1+1 : buf2+1);
        } else {
3364 3365
            robj *aux;

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            if (!copy) {
                /* No COPY option: remove the local key, signal the change. */
                dbDelete(c->db,c->argv[3]);
                signalModifiedKey(c->db,c->argv[3]);
            }
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            addReply(c,shared.ok);
3372 3373 3374
            server.dirty++;

            /* Translate MIGRATE as DEL for replication/AOF. */
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            aux = createStringObject("DEL",3);
3376 3377
            rewriteClientCommandVector(c,2,aux,c->argv[3]);
            decrRefCount(aux);
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        }
    }

3381
    sdsfree(cmd.io.buffer.ptr);
3382
    return;
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socket_wr_err:
3385
    sdsfree(cmd.io.buffer.ptr);
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    migrateCloseSocket(c->argv[1],c->argv[2]);
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    if (errno != ETIMEDOUT && retry_num++ == 0) goto try_again;
    addReplySds(c,
        sdsnew("-IOERR error or timeout writing to target instance\r\n"));
3390
    return;
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socket_rd_err:
3393
    sdsfree(cmd.io.buffer.ptr);
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    migrateCloseSocket(c->argv[1],c->argv[2]);
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    if (errno != ETIMEDOUT && retry_num++ == 0) goto try_again;
    addReplySds(c,
        sdsnew("-IOERR error or timeout reading from target node\r\n"));
3398 3399 3400
    return;
}

3401 3402 3403 3404
/* -----------------------------------------------------------------------------
 * Cluster functions related to serving / redirecting clients
 * -------------------------------------------------------------------------- */

3405
/* The ASKING command is required after a -ASK redirection.
G
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 * The client should issue ASKING before to actually send the command to
3407 3408 3409 3410 3411 3412 3413 3414 3415 3416 3417
 * the target instance. See the Redis Cluster specification for more
 * information. */
void askingCommand(redisClient *c) {
    if (server.cluster_enabled == 0) {
        addReplyError(c,"This instance has cluster support disabled");
        return;
    }
    c->flags |= REDIS_ASKING;
    addReply(c,shared.ok);
}

3418 3419 3420 3421 3422 3423 3424 3425 3426 3427 3428 3429 3430 3431 3432 3433 3434
/* The READONLY command is uesd by clients to enter the read-only mode.
 * In this mode slaves will not redirect clients as long as clients access
 * with read-only commands to keys that are served by the slave's master. */
void readonlyCommand(redisClient *c) {
    if (server.cluster_enabled == 0) {
        addReplyError(c,"This instance has cluster support disabled");
        return;
    }
    c->flags |= REDIS_READONLY;
    addReply(c,shared.ok);
}

/* The READWRITE command just clears the READONLY command state. */
void readwriteCommand(redisClient *c) {
    c->flags &= ~REDIS_READONLY;
    addReply(c,shared.ok);
}
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3436 3437 3438
/* Return the pointer to the cluster node that is able to serve the command.
 * For the function to succeed the command should only target a single
 * key (or the same key multiple times).
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 *
3440 3441 3442 3443
 * If the returned node should be used only for this request, the *ask
 * integer is set to '1', otherwise to '0'. This is used in order to
 * let the caller know if we should reply with -MOVED or with -ASK.
 *
3444 3445
 * If the command contains multiple keys, and as a consequence it is not
 * possible to handle the request in Redis Cluster, NULL is returned. */
3446
clusterNode *getNodeByQuery(redisClient *c, struct redisCommand *cmd, robj **argv, int argc, int *hashslot, int *ask) {
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    clusterNode *n = NULL;
3448
    robj *firstkey = NULL;
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3449 3450
    multiState *ms, _ms;
    multiCmd mc;
3451
    int i, slot = 0;
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3452 3453 3454 3455 3456 3457

    /* We handle all the cases as if they were EXEC commands, so we have
     * a common code path for everything */
    if (cmd->proc == execCommand) {
        /* If REDIS_MULTI flag is not set EXEC is just going to return an
         * error. */
3458
        if (!(c->flags & REDIS_MULTI)) return myself;
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        ms = &c->mstate;
    } else {
3461 3462 3463
        /* In order to have a single codepath create a fake Multi State
         * structure if the client is not in MULTI/EXEC state, this way
         * we have a single codepath below. */
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        ms = &_ms;
        _ms.commands = &mc;
        _ms.count = 1;
        mc.argv = argv;
        mc.argc = argc;
        mc.cmd = cmd;
    }

3472 3473
    /* Check that all the keys are the same key, and get the slot and
     * node for this key. */
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3474 3475 3476 3477 3478 3479 3480 3481 3482 3483
    for (i = 0; i < ms->count; i++) {
        struct redisCommand *mcmd;
        robj **margv;
        int margc, *keyindex, numkeys, j;

        mcmd = ms->commands[i].cmd;
        margc = ms->commands[i].argc;
        margv = ms->commands[i].argv;

        keyindex = getKeysFromCommand(mcmd,margv,margc,&numkeys,
3484
                                      REDIS_GETKEYS_ALL);
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        for (j = 0; j < numkeys; j++) {
3486 3487 3488 3489 3490 3491
            if (firstkey == NULL) {
                /* This is the first key we see. Check what is the slot
                 * and node. */
                firstkey = margv[keyindex[j]];

                slot = keyHashSlot((char*)firstkey->ptr, sdslen(firstkey->ptr));
3492
                n = server.cluster->slots[slot];
3493
                redisAssertWithInfo(c,firstkey,n != NULL);
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            } else {
3495 3496 3497 3498 3499 3500
                /* If it is not the first key, make sure it is exactly
                 * the same key as the first we saw. */
                if (!equalStringObjects(firstkey,margv[keyindex[j]])) {
                    getKeysFreeResult(keyindex);
                    return NULL;
                }
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            }
        }
        getKeysFreeResult(keyindex);
    }
3505 3506 3507
    if (ask) *ask = 0; /* This is the default. Set to 1 if needed later. */
    /* No key at all in command? then we can serve the request
     * without redirections. */
3508
    if (n == NULL) return myself;
3509 3510 3511 3512 3513
    if (hashslot) *hashslot = slot;
    /* This request is about a slot we are migrating into another instance?
     * Then we need to check if we have the key. If we have it we can reply.
     * If instead is a new key, we pass the request to the node that is
     * receiving the slot. */
3514
    if (n == myself && server.cluster->migrating_slots_to[slot] != NULL) {
3515 3516
        if (lookupKeyRead(&server.db[0],firstkey) == NULL) {
            if (ask) *ask = 1;
3517
            return server.cluster->migrating_slots_to[slot];
3518 3519 3520 3521
        }
    }
    /* Handle the case in which we are receiving this hash slot from
     * another instance, so we'll accept the query even if in the table
3522 3523
     * it is assigned to a different node, but only if the client
     * issued an ASKING command before. */
3524
    if (server.cluster->importing_slots_from[slot] != NULL &&
3525
        (c->flags & REDIS_ASKING || cmd->flags & REDIS_CMD_ASKING)) {
3526
        return myself;
3527
    }
3528 3529 3530 3531 3532
    /* Handle the read-only client case reading from a slave: if this
     * node is a slave and the request is about an hash slot our master
     * is serving, we can reply without redirection. */
    if (c->flags & REDIS_READONLY &&
        cmd->flags & REDIS_CMD_READONLY &&
3533
        nodeIsSlave(myself) &&
3534
        myself->slaveof == n)
3535
    {
3536
        return myself;
3537
    }
3538 3539
    /* It's not a -ASK case. Base case: just return the right node. */
    return n;
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}