replication.c 85.5 KB
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/* Asynchronous replication 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 "server.h"
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#include <sys/time.h>
#include <unistd.h>
#include <fcntl.h>
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#include <sys/socket.h>
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#include <sys/stat.h>

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void replicationDiscardCachedMaster(void);
void replicationResurrectCachedMaster(int newfd);
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void replicationSendAck(void);
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void putSlaveOnline(client *slave);
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/* --------------------------- Utility functions ---------------------------- */

/* Return the pointer to a string representing the slave ip:listening_port
 * pair. Mostly useful for logging, since we want to log a slave using its
 * IP address and it's listening port which is more clear for the user, for
 * example: "Closing connection with slave 10.1.2.3:6380". */
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char *replicationGetSlaveName(client *c) {
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    static char buf[NET_PEER_ID_LEN];
    char ip[NET_IP_STR_LEN];
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    ip[0] = '\0';
    buf[0] = '\0';
    if (anetPeerToString(c->fd,ip,sizeof(ip),NULL) != -1) {
        if (c->slave_listening_port)
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            anetFormatAddr(buf,sizeof(buf),ip,c->slave_listening_port);
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        else
            snprintf(buf,sizeof(buf),"%s:<unknown-slave-port>",ip);
    } else {
        snprintf(buf,sizeof(buf),"client id #%llu",
            (unsigned long long) c->id);
    }
    return buf;
}

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/* ---------------------------------- MASTER -------------------------------- */

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void createReplicationBacklog(void) {
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    serverAssert(server.repl_backlog == NULL);
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    server.repl_backlog = zmalloc(server.repl_backlog_size);
    server.repl_backlog_histlen = 0;
    server.repl_backlog_idx = 0;
    /* When a new backlog buffer is created, we increment the replication
     * offset by one to make sure we'll not be able to PSYNC with any
     * previous slave. This is needed because we avoid incrementing the
     * master_repl_offset if no backlog exists nor slaves are attached. */
    server.master_repl_offset++;

    /* We don't have any data inside our buffer, but virtually the first
     * byte we have is the next byte that will be generated for the
     * replication stream. */
    server.repl_backlog_off = server.master_repl_offset+1;
}

/* This function is called when the user modifies the replication backlog
 * size at runtime. It is up to the function to both update the
 * server.repl_backlog_size and to resize the buffer and setup it so that
 * it contains the same data as the previous one (possibly less data, but
 * the most recent bytes, or the same data and more free space in case the
 * buffer is enlarged). */
void resizeReplicationBacklog(long long newsize) {
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    if (newsize < CONFIG_REPL_BACKLOG_MIN_SIZE)
        newsize = CONFIG_REPL_BACKLOG_MIN_SIZE;
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    if (server.repl_backlog_size == newsize) return;

    server.repl_backlog_size = newsize;
    if (server.repl_backlog != NULL) {
        /* What we actually do is to flush the old buffer and realloc a new
         * empty one. It will refill with new data incrementally.
         * The reason is that copying a few gigabytes adds latency and even
         * worse often we need to alloc additional space before freeing the
         * old buffer. */
        zfree(server.repl_backlog);
        server.repl_backlog = zmalloc(server.repl_backlog_size);
        server.repl_backlog_histlen = 0;
        server.repl_backlog_idx = 0;
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        /* Next byte we have is... the next since the buffer is empty. */
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        server.repl_backlog_off = server.master_repl_offset+1;
    }
}

void freeReplicationBacklog(void) {
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    serverAssert(listLength(server.slaves) == 0);
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    zfree(server.repl_backlog);
    server.repl_backlog = NULL;
}

/* Add data to the replication backlog.
 * This function also increments the global replication offset stored at
 * server.master_repl_offset, because there is no case where we want to feed
 * the backlog without incrementing the buffer. */
void feedReplicationBacklog(void *ptr, size_t len) {
    unsigned char *p = ptr;

    server.master_repl_offset += len;

    /* This is a circular buffer, so write as much data we can at every
     * iteration and rewind the "idx" index if we reach the limit. */
    while(len) {
        size_t thislen = server.repl_backlog_size - server.repl_backlog_idx;
        if (thislen > len) thislen = len;
        memcpy(server.repl_backlog+server.repl_backlog_idx,p,thislen);
        server.repl_backlog_idx += thislen;
        if (server.repl_backlog_idx == server.repl_backlog_size)
            server.repl_backlog_idx = 0;
        len -= thislen;
        p += thislen;
        server.repl_backlog_histlen += thislen;
    }
    if (server.repl_backlog_histlen > server.repl_backlog_size)
        server.repl_backlog_histlen = server.repl_backlog_size;
    /* Set the offset of the first byte we have in the backlog. */
    server.repl_backlog_off = server.master_repl_offset -
                              server.repl_backlog_histlen + 1;
}

/* Wrapper for feedReplicationBacklog() that takes Redis string objects
 * as input. */
void feedReplicationBacklogWithObject(robj *o) {
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    char llstr[LONG_STR_SIZE];
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    void *p;
    size_t len;

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    if (o->encoding == OBJ_ENCODING_INT) {
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        len = ll2string(llstr,sizeof(llstr),(long)o->ptr);
        p = llstr;
    } else {
        len = sdslen(o->ptr);
        p = o->ptr;
    }
    feedReplicationBacklog(p,len);
}

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void replicationFeedSlaves(list *slaves, int dictid, robj **argv, int argc) {
    listNode *ln;
    listIter li;
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    int j, len;
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    char llstr[LONG_STR_SIZE];
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    /* If there aren't slaves, and there is no backlog buffer to populate,
     * we can return ASAP. */
    if (server.repl_backlog == NULL && listLength(slaves) == 0) return;

    /* We can't have slaves attached and no backlog. */
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    serverAssert(!(listLength(slaves) != 0 && server.repl_backlog == NULL));
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    /* Send SELECT command to every slave if needed. */
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    if (server.slaveseldb != dictid) {
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        robj *selectcmd;
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        /* For a few DBs we have pre-computed SELECT command. */
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        if (dictid >= 0 && dictid < PROTO_SHARED_SELECT_CMDS) {
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            selectcmd = shared.select[dictid];
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        } else {
            int dictid_len;

            dictid_len = ll2string(llstr,sizeof(llstr),dictid);
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            selectcmd = createObject(OBJ_STRING,
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                sdscatprintf(sdsempty(),
                "*2\r\n$6\r\nSELECT\r\n$%d\r\n%s\r\n",
                dictid_len, llstr));
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        }
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        /* Add the SELECT command into the backlog. */
        if (server.repl_backlog) feedReplicationBacklogWithObject(selectcmd);

        /* Send it to slaves. */
        listRewind(slaves,&li);
        while((ln = listNext(&li))) {
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            client *slave = ln->value;
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            if (slave->replstate == SLAVE_STATE_WAIT_BGSAVE_START) continue;
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            addReply(slave,selectcmd);
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        }

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        if (dictid < 0 || dictid >= PROTO_SHARED_SELECT_CMDS)
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            decrRefCount(selectcmd);
    }
    server.slaveseldb = dictid;
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    /* Write the command to the replication backlog if any. */
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    if (server.repl_backlog) {
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        char aux[LONG_STR_SIZE+3];
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        /* Add the multi bulk reply length. */
        aux[0] = '*';
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        len = ll2string(aux+1,sizeof(aux)-1,argc);
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        aux[len+1] = '\r';
        aux[len+2] = '\n';
        feedReplicationBacklog(aux,len+3);

        for (j = 0; j < argc; j++) {
            long objlen = stringObjectLen(argv[j]);
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            /* We need to feed the buffer with the object as a bulk reply
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             * not just as a plain string, so create the $..CRLF payload len
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             * and add the final CRLF */
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            aux[0] = '$';
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            len = ll2string(aux+1,sizeof(aux)-1,objlen);
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            aux[len+1] = '\r';
            aux[len+2] = '\n';
            feedReplicationBacklog(aux,len+3);
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            feedReplicationBacklogWithObject(argv[j]);
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            feedReplicationBacklog(aux+len+1,2);
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        }
    }
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    /* Write the command to every slave. */
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    listRewind(server.slaves,&li);
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    while((ln = listNext(&li))) {
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        client *slave = ln->value;
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        /* Don't feed slaves that are still waiting for BGSAVE to start */
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        if (slave->replstate == SLAVE_STATE_WAIT_BGSAVE_START) continue;
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        /* Feed slaves that are waiting for the initial SYNC (so these commands
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         * are queued in the output buffer until the initial SYNC completes),
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         * or are already in sync with the master. */
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        /* Add the multi bulk length. */
        addReplyMultiBulkLen(slave,argc);
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        /* Finally any additional argument that was not stored inside the
         * static buffer if any (from j to argc). */
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        for (j = 0; j < argc; j++)
            addReplyBulk(slave,argv[j]);
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    }
}

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void replicationFeedMonitors(client *c, list *monitors, int dictid, robj **argv, int argc) {
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    listNode *ln;
    listIter li;
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    int j;
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    sds cmdrepr = sdsnew("+");
    robj *cmdobj;
    struct timeval tv;

    gettimeofday(&tv,NULL);
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    cmdrepr = sdscatprintf(cmdrepr,"%ld.%06ld ",(long)tv.tv_sec,(long)tv.tv_usec);
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    if (c->flags & CLIENT_LUA) {
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        cmdrepr = sdscatprintf(cmdrepr,"[%d lua] ",dictid);
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    } else if (c->flags & CLIENT_UNIX_SOCKET) {
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        cmdrepr = sdscatprintf(cmdrepr,"[%d unix:%s] ",dictid,server.unixsocket);
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    } else {
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        cmdrepr = sdscatprintf(cmdrepr,"[%d %s] ",dictid,getClientPeerId(c));
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    }
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    for (j = 0; j < argc; j++) {
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        if (argv[j]->encoding == OBJ_ENCODING_INT) {
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            cmdrepr = sdscatprintf(cmdrepr, "\"%ld\"", (long)argv[j]->ptr);
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        } else {
            cmdrepr = sdscatrepr(cmdrepr,(char*)argv[j]->ptr,
                        sdslen(argv[j]->ptr));
        }
        if (j != argc-1)
            cmdrepr = sdscatlen(cmdrepr," ",1);
    }
    cmdrepr = sdscatlen(cmdrepr,"\r\n",2);
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    cmdobj = createObject(OBJ_STRING,cmdrepr);
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    listRewind(monitors,&li);
    while((ln = listNext(&li))) {
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        client *monitor = ln->value;
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        addReply(monitor,cmdobj);
    }
    decrRefCount(cmdobj);
}

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/* Feed the slave 'c' with the replication backlog starting from the
 * specified 'offset' up to the end of the backlog. */
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long long addReplyReplicationBacklog(client *c, long long offset) {
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    long long j, skip, len;

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    serverLog(LL_DEBUG, "[PSYNC] Slave request offset: %lld", offset);
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    if (server.repl_backlog_histlen == 0) {
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        serverLog(LL_DEBUG, "[PSYNC] Backlog history len is zero");
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        return 0;
    }

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    serverLog(LL_DEBUG, "[PSYNC] Backlog size: %lld",
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             server.repl_backlog_size);
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    serverLog(LL_DEBUG, "[PSYNC] First byte: %lld",
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             server.repl_backlog_off);
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    serverLog(LL_DEBUG, "[PSYNC] History len: %lld",
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             server.repl_backlog_histlen);
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    serverLog(LL_DEBUG, "[PSYNC] Current index: %lld",
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             server.repl_backlog_idx);
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    /* Compute the amount of bytes we need to discard. */
    skip = offset - server.repl_backlog_off;
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    serverLog(LL_DEBUG, "[PSYNC] Skipping: %lld", skip);
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    /* Point j to the oldest byte, that is actaully our
     * server.repl_backlog_off byte. */
    j = (server.repl_backlog_idx +
        (server.repl_backlog_size-server.repl_backlog_histlen)) %
        server.repl_backlog_size;
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    serverLog(LL_DEBUG, "[PSYNC] Index of first byte: %lld", j);
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    /* Discard the amount of data to seek to the specified 'offset'. */
    j = (j + skip) % server.repl_backlog_size;

    /* Feed slave with data. Since it is a circular buffer we have to
     * split the reply in two parts if we are cross-boundary. */
    len = server.repl_backlog_histlen - skip;
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    serverLog(LL_DEBUG, "[PSYNC] Reply total length: %lld", len);
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    while(len) {
        long long thislen =
            ((server.repl_backlog_size - j) < len) ?
            (server.repl_backlog_size - j) : len;

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        serverLog(LL_DEBUG, "[PSYNC] addReply() length: %lld", thislen);
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        addReplySds(c,sdsnewlen(server.repl_backlog + j, thislen));
        len -= thislen;
        j = 0;
    }
    return server.repl_backlog_histlen - skip;
}

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/* Return the offset to provide as reply to the PSYNC command received
 * from the slave. The returned value is only valid immediately after
 * the BGSAVE process started and before executing any other command
 * from clients. */
long long getPsyncInitialOffset(void) {
    long long psync_offset = server.master_repl_offset;
    /* Add 1 to psync_offset if it the replication backlog does not exists
     * as when it will be created later we'll increment the offset by one. */
    if (server.repl_backlog == NULL) psync_offset++;
    return psync_offset;
}

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/* Send a FULLRESYNC reply in the specific case of a full resynchronization,
 * as a side effect setup the slave for a full sync in different ways:
 *
 * 1) Remember, into the slave client structure, the offset we sent
 *    here, so that if new slaves will later attach to the same
 *    background RDB saving process (by duplicating this client output
 *    buffer), we can get the right offset from this slave.
 * 2) Set the replication state of the slave to WAIT_BGSAVE_END so that
 *    we start accumulating differences from this point.
 * 3) Force the replication stream to re-emit a SELECT statement so
 *    the new slave incremental differences will start selecting the
 *    right database number.
 */
int replicationSetupSlaveForFullResync(client *slave, long long offset) {
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    char buf[128];
    int buflen;

    slave->psync_initial_offset = offset;
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    slave->replstate = SLAVE_STATE_WAIT_BGSAVE_END;
    /* We are going to accumulate the incremental changes for this
     * slave as well. Set slaveseldb to -1 in order to force to re-emit
     * a SLEECT statement in the replication stream. */
    server.slaveseldb = -1;

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    /* Don't send this reply to slaves that approached us with
     * the old SYNC command. */
    if (!(slave->flags & CLIENT_PRE_PSYNC)) {
        buflen = snprintf(buf,sizeof(buf),"+FULLRESYNC %s %lld\r\n",
                          server.runid,offset);
        if (write(slave->fd,buf,buflen) != buflen) {
            freeClientAsync(slave);
            return C_ERR;
        }
    }
    return C_OK;
}

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/* This function handles the PSYNC command from the point of view of a
 * master receiving a request for partial resynchronization.
 *
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 * On success return C_OK, otherwise C_ERR is returned and we proceed
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 * with the usual full resync. */
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int masterTryPartialResynchronization(client *c) {
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    long long psync_offset, psync_len;
    char *master_runid = c->argv[1]->ptr;
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    char buf[128];
    int buflen;
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    /* Is the runid of this master the same advertised by the wannabe slave
     * via PSYNC? If runid changed this master is a different instance and
     * there is no way to continue. */
    if (strcasecmp(master_runid, server.runid)) {
        /* Run id "?" is used by slaves that want to force a full resync. */
        if (master_runid[0] != '?') {
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            serverLog(LL_NOTICE,"Partial resynchronization not accepted: "
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                "Runid mismatch (Client asked for runid '%s', my runid is '%s')",
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                master_runid, server.runid);
        } else {
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            serverLog(LL_NOTICE,"Full resync requested by slave %s",
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                replicationGetSlaveName(c));
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        }
        goto need_full_resync;
    }

    /* We still have the data our slave is asking for? */
    if (getLongLongFromObjectOrReply(c,c->argv[2],&psync_offset,NULL) !=
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       C_OK) goto need_full_resync;
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    if (!server.repl_backlog ||
        psync_offset < server.repl_backlog_off ||
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        psync_offset > (server.repl_backlog_off + server.repl_backlog_histlen))
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    {
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        serverLog(LL_NOTICE,
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            "Unable to partial resync with slave %s for lack of backlog (Slave request was: %lld).", replicationGetSlaveName(c), psync_offset);
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        if (psync_offset > server.master_repl_offset) {
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            serverLog(LL_WARNING,
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                "Warning: slave %s tried to PSYNC with an offset that is greater than the master replication offset.", replicationGetSlaveName(c));
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        }
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        goto need_full_resync;
    }

    /* If we reached this point, we are able to perform a partial resync:
     * 1) Set client state to make it a slave.
     * 2) Inform the client we can continue with +CONTINUE
     * 3) Send the backlog data (from the offset to the end) to the slave. */
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    c->flags |= CLIENT_SLAVE;
    c->replstate = SLAVE_STATE_ONLINE;
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    c->repl_ack_time = server.unixtime;
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    c->repl_put_online_on_ack = 0;
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    listAddNodeTail(server.slaves,c);
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    /* We can't use the connection buffers since they are used to accumulate
     * new commands at this stage. But we are sure the socket send buffer is
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     * empty so this write will never fail actually. */
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    buflen = snprintf(buf,sizeof(buf),"+CONTINUE\r\n");
    if (write(c->fd,buf,buflen) != buflen) {
        freeClientAsync(c);
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        return C_OK;
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    }
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    psync_len = addReplyReplicationBacklog(c,psync_offset);
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    serverLog(LL_NOTICE,
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        "Partial resynchronization request from %s accepted. Sending %lld bytes of backlog starting from offset %lld.",
            replicationGetSlaveName(c),
            psync_len, psync_offset);
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    /* Note that we don't need to set the selected DB at server.slaveseldb
     * to -1 to force the master to emit SELECT, since the slave already
     * has this state from the previous connection with the master. */

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    refreshGoodSlavesCount();
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    return C_OK; /* The caller can return, no full resync needed. */
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need_full_resync:
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    /* We need a full resync for some reason... Note that we can't
     * reply to PSYNC right now if a full SYNC is needed. The reply
     * must include the master offset at the time the RDB file we transfer
     * is generated, so we need to delay the reply to that moment. */
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    return C_ERR;
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}

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/* Start a BGSAVE for replication goals, which is, selecting the disk or
 * socket target depending on the configuration, and making sure that
 * the script cache is flushed before to start.
 *
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 * Returns C_OK on success or C_ERR otherwise. */
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int startBgsaveForReplication(void) {
    int retval;

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    serverLog(LL_NOTICE,"Starting BGSAVE for SYNC with target: %s",
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        server.repl_diskless_sync ? "slaves sockets" : "disk");
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    if (server.repl_diskless_sync)
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        retval = rdbSaveToSlavesSockets();
    else
        retval = rdbSaveBackground(server.rdb_filename);

    /* Flush the script cache, since we need that slave differences are
     * accumulated without requiring slaves to match our cached scripts. */
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    if (retval == C_OK) replicationScriptCacheFlush();
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    return retval;
}

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/* SYNC and PSYNC command implemenation. */
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void syncCommand(client *c) {
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    /* ignore SYNC if already slave or in monitor mode */
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    if (c->flags & CLIENT_SLAVE) return;
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    /* Refuse SYNC requests if we are a slave but the link with our master
     * is not ok... */
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    if (server.masterhost && server.repl_state != REPL_STATE_CONNECTED) {
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        addReplyError(c,"Can't SYNC while not connected with my master");
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        return;
    }

516 517 518 519
    /* SYNC can't be issued when the server has pending data to send to
     * the client about already issued commands. We need a fresh reply
     * buffer registering the differences between the BGSAVE and the current
     * dataset, so that we can copy to other slaves if needed. */
520 521
    if (listLength(c->reply) != 0 || c->bufpos != 0) {
        addReplyError(c,"SYNC and PSYNC are invalid with pending output");
522 523 524
        return;
    }

A
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525
    serverLog(LL_NOTICE,"Slave %s asks for synchronization",
A
antirez 已提交
526
        replicationGetSlaveName(c));
527 528 529 530 531 532 533 534 535 536

    /* Try a partial resynchronization if this is a PSYNC command.
     * If it fails, we continue with usual full resynchronization, however
     * when this happens masterTryPartialResynchronization() already
     * replied with:
     *
     * +FULLRESYNC <runid> <offset>
     *
     * So the slave knows the new runid and offset to try a PSYNC later
     * if the connection with the master is lost. */
537
    if (!strcasecmp(c->argv[0]->ptr,"psync")) {
538
        if (masterTryPartialResynchronization(c) == C_OK) {
539 540 541 542
            server.stat_sync_partial_ok++;
            return; /* No full resync needed, return. */
        } else {
            char *master_runid = c->argv[1]->ptr;
543

544 545 546 547 548 549
            /* Increment stats for failed PSYNCs, but only if the
             * runid is not "?", as this is used by slaves to force a full
             * resync on purpose when they are not albe to partially
             * resync. */
            if (master_runid[0] != '?') server.stat_sync_partial_err++;
        }
550 551 552 553
    } else {
        /* If a slave uses SYNC, we are dealing with an old implementation
         * of the replication protocol (like redis-cli --slave). Flag the client
         * so that we don't expect to receive REPLCONF ACK feedbacks. */
A
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554
        c->flags |= CLIENT_PRE_PSYNC;
555 556 557 558
    }

    /* Full resynchronization. */
    server.stat_sync_full++;
559

560 561
    /* Here we need to check if there is a background saving operation
     * in progress, or if it is required to start one */
A
antirez 已提交
562 563

    /* CASE 1: BGSAVE is in progress and replication target is disk. */
564
    if (server.rdb_child_pid != -1 &&
A
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565
        server.rdb_child_type == RDB_CHILD_TYPE_DISK)
566
    {
567 568
        /* Ok a background save is in progress. Let's check if it is a good
         * one for replication, i.e. if there is another slave that is
569
         * registering differences since the server forked to save. */
570
        client *slave;
571 572 573 574 575 576
        listNode *ln;
        listIter li;

        listRewind(server.slaves,&li);
        while((ln = listNext(&li))) {
            slave = ln->value;
A
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577
            if (slave->replstate == SLAVE_STATE_WAIT_BGSAVE_END) break;
578 579 580
        }
        if (ln) {
            /* Perfect, the server is already registering differences for
581
             * another slave. Set the right state, and copy the buffer. */
582
            copyClientOutputBuffer(c,slave);
583
            replicationSetupSlaveForFullResync(c,slave->psync_initial_offset);
A
antirez 已提交
584
            serverLog(LL_NOTICE,"Waiting for end of BGSAVE for SYNC");
585 586
        } else {
            /* No way, we need to wait for the next BGSAVE in order to
587
             * register differences. */
A
antirez 已提交
588 589
            c->replstate = SLAVE_STATE_WAIT_BGSAVE_START;
            serverLog(LL_NOTICE,"Waiting for next BGSAVE for SYNC");
590
        }
A
antirez 已提交
591 592

    /* CASE 2: BGSAVE is in progress and replication target is socket. */
593
    } else if (server.rdb_child_pid != -1 &&
A
antirez 已提交
594
               server.rdb_child_type == RDB_CHILD_TYPE_SOCKET)
595 596 597 598
    {
        /* There is an RDB child process but it is writing directly to
         * children sockets. We need to wait for the next BGSAVE
         * in order to synchronize. */
A
antirez 已提交
599 600
        c->replstate = SLAVE_STATE_WAIT_BGSAVE_START;
        serverLog(LL_NOTICE,"Waiting for next BGSAVE for SYNC");
A
antirez 已提交
601 602

    /* CASE 3: There is no BGSAVE is progress. */
603
    } else {
604
        if (server.repl_diskless_sync) {
605 606 607
            /* Diskless replication RDB child is created inside
             * replicationCron() since we want to delay its start a
             * few seconds to wait for more slaves to arrive. */
A
antirez 已提交
608
            c->replstate = SLAVE_STATE_WAIT_BGSAVE_START;
609
            if (server.repl_diskless_sync_delay)
A
antirez 已提交
610
                serverLog(LL_NOTICE,"Delay next BGSAVE for SYNC");
611
        } else {
A
antirez 已提交
612 613
            /* Target is disk and we don't have a BGSAVE in progress,
             * let's start one. */
614
            if (startBgsaveForReplication() != C_OK) {
A
antirez 已提交
615
                serverLog(LL_NOTICE,"Replication failed, can't BGSAVE");
616 617 618
                addReplyError(c,"Unable to perform background save");
                return;
            }
619
            replicationSetupSlaveForFullResync(c,getPsyncInitialOffset());
620 621
        }
    }
622 623 624

    if (server.repl_disable_tcp_nodelay)
        anetDisableTcpNoDelay(NULL, c->fd); /* Non critical if it fails. */
625
    c->repldbfd = -1;
A
antirez 已提交
626
    c->flags |= CLIENT_SLAVE;
627
    listAddNodeTail(server.slaves,c);
628 629
    if (listLength(server.slaves) == 1 && server.repl_backlog == NULL)
        createReplicationBacklog();
630 631 632
    return;
}

A
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633 634 635 636 637 638 639 640 641 642 643 644
/* REPLCONF <option> <value> <option> <value> ...
 * This command is used by a slave in order to configure the replication
 * process before starting it with the SYNC command.
 *
 * Currently the only use of this command is to communicate to the master
 * what is the listening port of the Slave redis instance, so that the
 * master can accurately list slaves and their listening ports in
 * the INFO output.
 *
 * In the future the same command can be used in order to configure
 * the replication to initiate an incremental replication instead of a
 * full resync. */
645
void replconfCommand(client *c) {
A
antirez 已提交
646 647 648 649 650 651 652 653 654 655 656 657 658 659 660
    int j;

    if ((c->argc % 2) == 0) {
        /* Number of arguments must be odd to make sure that every
         * option has a corresponding value. */
        addReply(c,shared.syntaxerr);
        return;
    }

    /* Process every option-value pair. */
    for (j = 1; j < c->argc; j+=2) {
        if (!strcasecmp(c->argv[j]->ptr,"listening-port")) {
            long port;

            if ((getLongFromObjectOrReply(c,c->argv[j+1],
661
                    &port,NULL) != C_OK))
A
antirez 已提交
662 663
                return;
            c->slave_listening_port = port;
A
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664 665 666 667 668 669
        } else if (!strcasecmp(c->argv[j]->ptr,"ack")) {
            /* REPLCONF ACK is used by slave to inform the master the amount
             * of replication stream that it processed so far. It is an
             * internal only command that normal clients should never use. */
            long long offset;

A
antirez 已提交
670
            if (!(c->flags & CLIENT_SLAVE)) return;
671
            if ((getLongLongFromObject(c->argv[j+1], &offset) != C_OK))
A
antirez 已提交
672 673 674 675
                return;
            if (offset > c->repl_ack_off)
                c->repl_ack_off = offset;
            c->repl_ack_time = server.unixtime;
A
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676 677 678
            /* If this was a diskless replication, we need to really put
             * the slave online when the first ACK is received (which
             * confirms slave is online and ready to get more data). */
A
antirez 已提交
679
            if (c->repl_put_online_on_ack && c->replstate == SLAVE_STATE_ONLINE)
A
antirez 已提交
680
                putSlaveOnline(c);
A
antirez 已提交
681
            /* Note: this command does not reply anything! */
682
            return;
683 684 685 686 687
        } else if (!strcasecmp(c->argv[j]->ptr,"getack")) {
            /* REPLCONF GETACK is used in order to request an ACK ASAP
             * to the slave. */
            if (server.masterhost && server.master) replicationSendAck();
            /* Note: this command does not reply anything! */
A
antirez 已提交
688 689 690 691 692 693 694 695 696
        } else {
            addReplyErrorFormat(c,"Unrecognized REPLCONF option: %s",
                (char*)c->argv[j]->ptr);
            return;
        }
    }
    addReply(c,shared.ok);
}

697 698 699 700 701 702
/* This function puts a slave in the online state, and should be called just
 * after a slave received the RDB file for the initial synchronization, and
 * we are finally ready to send the incremental stream of commands.
 *
 * It does a few things:
 *
703 704
 * 1) Put the slave in ONLINE state (useless when the function is called
 *    because state is already ONLINE but repl_put_online_on_ack is true).
705 706 707 708
 * 2) Make sure the writable event is re-installed, since calling the SYNC
 *    command disables it, so that we can accumulate output buffer without
 *    sending it to the slave.
 * 3) Update the count of good slaves. */
709
void putSlaveOnline(client *slave) {
A
antirez 已提交
710
    slave->replstate = SLAVE_STATE_ONLINE;
A
antirez 已提交
711
    slave->repl_put_online_on_ack = 0;
712
    slave->repl_ack_time = server.unixtime; /* Prevent false timeout. */
713 714
    if (aeCreateFileEvent(server.el, slave->fd, AE_WRITABLE,
        sendReplyToClient, slave) == AE_ERR) {
A
antirez 已提交
715
        serverLog(LL_WARNING,"Unable to register writable event for slave bulk transfer: %s", strerror(errno));
716 717 718 719
        freeClient(slave);
        return;
    }
    refreshGoodSlavesCount();
A
antirez 已提交
720
    serverLog(LL_NOTICE,"Synchronization with slave %s succeeded",
A
antirez 已提交
721
        replicationGetSlaveName(slave));
722 723
}

724
void sendBulkToSlave(aeEventLoop *el, int fd, void *privdata, int mask) {
725
    client *slave = privdata;
A
antirez 已提交
726 727 728
    UNUSED(el);
    UNUSED(mask);
    char buf[PROTO_IOBUF_LEN];
729 730
    ssize_t nwritten, buflen;

731 732 733 734 735 736
    /* Before sending the RDB file, we send the preamble as configured by the
     * replication process. Currently the preamble is just the bulk count of
     * the file in the form "$<length>\r\n". */
    if (slave->replpreamble) {
        nwritten = write(fd,slave->replpreamble,sdslen(slave->replpreamble));
        if (nwritten == -1) {
A
antirez 已提交
737
            serverLog(LL_VERBOSE,"Write error sending RDB preamble to slave: %s",
738
                strerror(errno));
739 740 741
            freeClient(slave);
            return;
        }
742
        server.stat_net_output_bytes += nwritten;
743 744 745 746 747 748 749 750
        sdsrange(slave->replpreamble,nwritten,-1);
        if (sdslen(slave->replpreamble) == 0) {
            sdsfree(slave->replpreamble);
            slave->replpreamble = NULL;
            /* fall through sending data. */
        } else {
            return;
        }
751
    }
752 753

    /* If the preamble was already transfered, send the RDB bulk data. */
754
    lseek(slave->repldbfd,slave->repldboff,SEEK_SET);
A
antirez 已提交
755
    buflen = read(slave->repldbfd,buf,PROTO_IOBUF_LEN);
756
    if (buflen <= 0) {
A
antirez 已提交
757
        serverLog(LL_WARNING,"Read error sending DB to slave: %s",
758 759 760 761 762
            (buflen == 0) ? "premature EOF" : strerror(errno));
        freeClient(slave);
        return;
    }
    if ((nwritten = write(fd,buf,buflen)) == -1) {
A
antirez 已提交
763
        if (errno != EAGAIN) {
A
antirez 已提交
764
            serverLog(LL_WARNING,"Write error sending DB to slave: %s",
A
antirez 已提交
765 766 767
                strerror(errno));
            freeClient(slave);
        }
768 769 770
        return;
    }
    slave->repldboff += nwritten;
771
    server.stat_net_output_bytes += nwritten;
772 773 774 775
    if (slave->repldboff == slave->repldbsize) {
        close(slave->repldbfd);
        slave->repldbfd = -1;
        aeDeleteFileEvent(server.el,slave->fd,AE_WRITABLE);
776
        putSlaveOnline(slave);
777 778 779
    }
}

780 781 782
/* This function is called at the end of every background saving,
 * or when the replication RDB transfer strategy is modified from
 * disk to socket or the other way around.
783 784
 *
 * The goal of this function is to handle slaves waiting for a successful
785 786 787
 * background saving in order to perform non-blocking synchronization, and
 * to schedule a new BGSAVE if there are slaves that attached while a
 * BGSAVE was in progress, but it was not a good one for replication (no
788 789
 * other slave was accumulating differences).
 *
790 791
 * The argument bgsaveerr is C_OK if the background saving succeeded
 * otherwise C_ERR is passed to the function.
792 793
 * The 'type' argument is the type of the child that terminated
 * (if it had a disk or socket target). */
794
void updateSlavesWaitingBgsave(int bgsaveerr, int type) {
795 796 797 798 799 800
    listNode *ln;
    int startbgsave = 0;
    listIter li;

    listRewind(server.slaves,&li);
    while((ln = listNext(&li))) {
801
        client *slave = ln->value;
802

A
antirez 已提交
803
        if (slave->replstate == SLAVE_STATE_WAIT_BGSAVE_START) {
804
            startbgsave = 1;
805
            replicationSetupSlaveForFullResync(slave,getPsyncInitialOffset());
A
antirez 已提交
806
        } else if (slave->replstate == SLAVE_STATE_WAIT_BGSAVE_END) {
807 808
            struct redis_stat buf;

809 810 811 812 813
            /* If this was an RDB on disk save, we have to prepare to send
             * the RDB from disk to the slave socket. Otherwise if this was
             * already an RDB -> Slaves socket transfer, used in the case of
             * diskless replication, our work is trivial, we can just put
             * the slave online. */
A
antirez 已提交
814 815
            if (type == RDB_CHILD_TYPE_SOCKET) {
                serverLog(LL_NOTICE,
A
antirez 已提交
816
                    "Streamed RDB transfer with slave %s succeeded (socket). Waiting for REPLCONF ACK from slave to enable streaming",
A
antirez 已提交
817
                        replicationGetSlaveName(slave));
A
antirez 已提交
818 819 820 821 822
                /* Note: we wait for a REPLCONF ACK message from slave in
                 * order to really put it online (install the write handler
                 * so that the accumulated data can be transfered). However
                 * we change the replication state ASAP, since our slave
                 * is technically online now. */
A
antirez 已提交
823
                slave->replstate = SLAVE_STATE_ONLINE;
A
antirez 已提交
824
                slave->repl_put_online_on_ack = 1;
825
                slave->repl_ack_time = server.unixtime; /* Timeout otherwise. */
826
            } else {
827
                if (bgsaveerr != C_OK) {
828
                    freeClient(slave);
A
antirez 已提交
829
                    serverLog(LL_WARNING,"SYNC failed. BGSAVE child returned an error");
830 831 832 833 834
                    continue;
                }
                if ((slave->repldbfd = open(server.rdb_filename,O_RDONLY)) == -1 ||
                    redis_fstat(slave->repldbfd,&buf) == -1) {
                    freeClient(slave);
A
antirez 已提交
835
                    serverLog(LL_WARNING,"SYNC failed. Can't open/stat DB after BGSAVE: %s", strerror(errno));
836 837 838 839
                    continue;
                }
                slave->repldboff = 0;
                slave->repldbsize = buf.st_size;
A
antirez 已提交
840
                slave->replstate = SLAVE_STATE_SEND_BULK;
841 842 843 844 845 846 847 848
                slave->replpreamble = sdscatprintf(sdsempty(),"$%lld\r\n",
                    (unsigned long long) slave->repldbsize);

                aeDeleteFileEvent(server.el,slave->fd,AE_WRITABLE);
                if (aeCreateFileEvent(server.el, slave->fd, AE_WRITABLE, sendBulkToSlave, slave) == AE_ERR) {
                    freeClient(slave);
                    continue;
                }
849 850 851 852
            }
        }
    }
    if (startbgsave) {
853
        if (startBgsaveForReplication() != C_OK) {
854 855 856
            listIter li;

            listRewind(server.slaves,&li);
A
antirez 已提交
857
            serverLog(LL_WARNING,"SYNC failed. BGSAVE failed");
858
            while((ln = listNext(&li))) {
859
                client *slave = ln->value;
860

A
antirez 已提交
861
                if (slave->replstate == SLAVE_STATE_WAIT_BGSAVE_START)
862 863 864 865 866 867
                    freeClient(slave);
            }
        }
    }
}

868 869 870 871
/* ----------------------------------- SLAVE -------------------------------- */

/* Abort the async download of the bulk dataset while SYNC-ing with master */
void replicationAbortSyncTransfer(void) {
A
antirez 已提交
872
    serverAssert(server.repl_state == REPL_STATE_TRANSFER);
873 874 875 876 877 878

    aeDeleteFileEvent(server.el,server.repl_transfer_s,AE_READABLE);
    close(server.repl_transfer_s);
    close(server.repl_transfer_fd);
    unlink(server.repl_transfer_tmpfile);
    zfree(server.repl_transfer_tmpfile);
A
antirez 已提交
879
    server.repl_state = REPL_STATE_CONNECT;
880 881
}

A
antirez 已提交
882 883 884 885 886 887 888 889 890 891 892 893 894 895 896 897 898 899 900 901 902
/* Avoid the master to detect the slave is timing out while loading the
 * RDB file in initial synchronization. We send a single newline character
 * that is valid protocol but is guaranteed to either be sent entierly or
 * not, since the byte is indivisible.
 *
 * The function is called in two contexts: while we flush the current
 * data with emptyDb(), and while we load the new data received as an
 * RDB file from the master. */
void replicationSendNewlineToMaster(void) {
    static time_t newline_sent;
    if (time(NULL) != newline_sent) {
        newline_sent = time(NULL);
        if (write(server.repl_transfer_s,"\n",1) == -1) {
            /* Pinging back in this stage is best-effort. */
        }
    }
}

/* Callback used by emptyDb() while flushing away old data to load
 * the new dataset received by the master. */
void replicationEmptyDbCallback(void *privdata) {
A
antirez 已提交
903
    UNUSED(privdata);
A
antirez 已提交
904 905 906
    replicationSendNewlineToMaster();
}

907 908 909 910 911
/* Once we have a link with the master and the synchroniziation was
 * performed, this function materializes the master client we store
 * at server.master, starting from the specified file descriptor. */
void replicationCreateMasterClient(int fd) {
    server.master = createClient(fd);
A
antirez 已提交
912
    server.master->flags |= CLIENT_MASTER;
913
    server.master->authenticated = 1;
A
antirez 已提交
914
    server.repl_state = REPL_STATE_CONNECTED;
915 916 917 918 919 920
    server.master->reploff = server.repl_master_initial_offset;
    memcpy(server.master->replrunid, server.repl_master_runid,
        sizeof(server.repl_master_runid));
    /* If master offset is set to -1, this master is old and is not
     * PSYNC capable, so we flag it accordingly. */
    if (server.master->reploff == -1)
A
antirez 已提交
921
        server.master->flags |= CLIENT_PRE_PSYNC;
922 923
}

924
/* Asynchronously read the SYNC payload we receive from a master */
925
#define REPL_MAX_WRITTEN_BEFORE_FSYNC (1024*1024*8) /* 8 MB */
926
void readSyncBulkPayload(aeEventLoop *el, int fd, void *privdata, int mask) {
927
    char buf[4096];
928
    ssize_t nread, readlen;
929
    off_t left;
A
antirez 已提交
930 931 932
    UNUSED(el);
    UNUSED(privdata);
    UNUSED(mask);
933

934 935
    /* Static vars used to hold the EOF mark, and the last bytes received
     * form the server: when they match, we reached the end of the transfer. */
A
antirez 已提交
936 937
    static char eofmark[CONFIG_RUN_ID_SIZE];
    static char lastbytes[CONFIG_RUN_ID_SIZE];
938 939
    static int usemark = 0;

940
    /* If repl_transfer_size == -1 we still have to read the bulk length
941
     * from the master reply. */
942
    if (server.repl_transfer_size == -1) {
943
        if (syncReadLine(fd,buf,1024,server.repl_syncio_timeout*1000) == -1) {
A
antirez 已提交
944
            serverLog(LL_WARNING,
945 946
                "I/O error reading bulk count from MASTER: %s",
                strerror(errno));
947
            goto error;
948
        }
949

950
        if (buf[0] == '-') {
A
antirez 已提交
951
            serverLog(LL_WARNING,
952 953
                "MASTER aborted replication with an error: %s",
                buf+1);
954
            goto error;
955 956 957 958
        } else if (buf[0] == '\0') {
            /* At this stage just a newline works as a PING in order to take
             * the connection live. So we refresh our last interaction
             * timestamp. */
959
            server.repl_transfer_lastio = server.unixtime;
960
            return;
961
        } else if (buf[0] != '$') {
A
antirez 已提交
962
            serverLog(LL_WARNING,"Bad protocol from MASTER, the first byte is not '$' (we received '%s'), are you sure the host and port are right?", buf);
963
            goto error;
964
        }
965 966 967 968 969 970 971 972 973 974 975

        /* There are two possible forms for the bulk payload. One is the
         * usual $<count> bulk format. The other is used for diskless transfers
         * when the master does not know beforehand the size of the file to
         * transfer. In the latter case, the following format is used:
         *
         * $EOF:<40 bytes delimiter>
         *
         * At the end of the file the announced delimiter is transmitted. The
         * delimiter is long and random enough that the probability of a
         * collision with the actual file content can be ignored. */
A
antirez 已提交
976
        if (strncmp(buf+1,"EOF:",4) == 0 && strlen(buf+5) >= CONFIG_RUN_ID_SIZE) {
977
            usemark = 1;
A
antirez 已提交
978 979
            memcpy(eofmark,buf+5,CONFIG_RUN_ID_SIZE);
            memset(lastbytes,0,CONFIG_RUN_ID_SIZE);
980 981 982
            /* Set any repl_transfer_size to avoid entering this code path
             * at the next call. */
            server.repl_transfer_size = 0;
A
antirez 已提交
983
            serverLog(LL_NOTICE,
984 985 986 987
                "MASTER <-> SLAVE sync: receiving streamed RDB from master");
        } else {
            usemark = 0;
            server.repl_transfer_size = strtol(buf+1,NULL,10);
A
antirez 已提交
988
            serverLog(LL_NOTICE,
989 990 991
                "MASTER <-> SLAVE sync: receiving %lld bytes from master",
                (long long) server.repl_transfer_size);
        }
992 993 994 995
        return;
    }

    /* Read bulk data */
996
    if (usemark) {
997 998
        readlen = sizeof(buf);
    } else {
999 1000 1001 1002
        left = server.repl_transfer_size - server.repl_transfer_read;
        readlen = (left < (signed)sizeof(buf)) ? left : (signed)sizeof(buf);
    }

1003 1004
    nread = read(fd,buf,readlen);
    if (nread <= 0) {
A
antirez 已提交
1005
        serverLog(LL_WARNING,"I/O error trying to sync with MASTER: %s",
1006 1007 1008 1009
            (nread == -1) ? strerror(errno) : "connection lost");
        replicationAbortSyncTransfer();
        return;
    }
1010
    server.stat_net_input_bytes += nread;
1011 1012 1013 1014 1015 1016

    /* When a mark is used, we want to detect EOF asap in order to avoid
     * writing the EOF mark into the file... */
    int eof_reached = 0;

    if (usemark) {
A
antirez 已提交
1017
        /* Update the last bytes array, and check if it matches our delimiter.*/
A
antirez 已提交
1018 1019
        if (nread >= CONFIG_RUN_ID_SIZE) {
            memcpy(lastbytes,buf+nread-CONFIG_RUN_ID_SIZE,CONFIG_RUN_ID_SIZE);
1020
        } else {
A
antirez 已提交
1021
            int rem = CONFIG_RUN_ID_SIZE-nread;
1022 1023 1024
            memmove(lastbytes,lastbytes+nread,rem);
            memcpy(lastbytes+rem,buf,nread);
        }
A
antirez 已提交
1025
        if (memcmp(lastbytes,eofmark,CONFIG_RUN_ID_SIZE) == 0) eof_reached = 1;
1026 1027
    }

1028
    server.repl_transfer_lastio = server.unixtime;
1029
    if (write(server.repl_transfer_fd,buf,nread) != nread) {
A
antirez 已提交
1030
        serverLog(LL_WARNING,"Write error or short write writing to the DB dump file needed for MASTER <-> SLAVE synchronization: %s", strerror(errno));
1031
        goto error;
1032
    }
1033 1034
    server.repl_transfer_read += nread;

1035 1036 1037
    /* Delete the last 40 bytes from the file if we reached EOF. */
    if (usemark && eof_reached) {
        if (ftruncate(server.repl_transfer_fd,
A
antirez 已提交
1038
            server.repl_transfer_read - CONFIG_RUN_ID_SIZE) == -1)
1039
        {
A
antirez 已提交
1040
            serverLog(LL_WARNING,"Error truncating the RDB file received from the master for SYNC: %s", strerror(errno));
1041 1042 1043 1044
            goto error;
        }
    }

1045 1046 1047 1048 1049 1050 1051 1052 1053 1054 1055 1056 1057
    /* Sync data on disk from time to time, otherwise at the end of the transfer
     * we may suffer a big delay as the memory buffers are copied into the
     * actual disk. */
    if (server.repl_transfer_read >=
        server.repl_transfer_last_fsync_off + REPL_MAX_WRITTEN_BEFORE_FSYNC)
    {
        off_t sync_size = server.repl_transfer_read -
                          server.repl_transfer_last_fsync_off;
        rdb_fsync_range(server.repl_transfer_fd,
            server.repl_transfer_last_fsync_off, sync_size);
        server.repl_transfer_last_fsync_off += sync_size;
    }

1058
    /* Check if the transfer is now complete */
1059 1060 1061 1062 1063 1064
    if (!usemark) {
        if (server.repl_transfer_read == server.repl_transfer_size)
            eof_reached = 1;
    }

    if (eof_reached) {
A
antirez 已提交
1065
        if (rename(server.repl_transfer_tmpfile,server.rdb_filename) == -1) {
A
antirez 已提交
1066
            serverLog(LL_WARNING,"Failed trying to rename the temp DB into dump.rdb in MASTER <-> SLAVE synchronization: %s", strerror(errno));
1067 1068 1069
            replicationAbortSyncTransfer();
            return;
        }
A
antirez 已提交
1070
        serverLog(LL_NOTICE, "MASTER <-> SLAVE sync: Flushing old data");
1071
        signalFlushedDb(-1);
A
antirez 已提交
1072
        emptyDb(replicationEmptyDbCallback);
1073 1074 1075 1076 1077
        /* Before loading the DB into memory we need to delete the readable
         * handler, otherwise it will get called recursively since
         * rdbLoad() will call the event loop to process events from time to
         * time for non blocking loading. */
        aeDeleteFileEvent(server.el,server.repl_transfer_s,AE_READABLE);
A
antirez 已提交
1078
        serverLog(LL_NOTICE, "MASTER <-> SLAVE sync: Loading DB in memory");
1079
        if (rdbLoad(server.rdb_filename) != C_OK) {
A
antirez 已提交
1080
            serverLog(LL_WARNING,"Failed trying to load the MASTER synchronization DB from disk");
1081 1082 1083 1084 1085 1086
            replicationAbortSyncTransfer();
            return;
        }
        /* Final setup of the connected slave <- master link */
        zfree(server.repl_transfer_tmpfile);
        close(server.repl_transfer_fd);
1087
        replicationCreateMasterClient(server.repl_transfer_s);
A
antirez 已提交
1088
        serverLog(LL_NOTICE, "MASTER <-> SLAVE sync: Finished with success");
1089 1090 1091
        /* Restart the AOF subsystem now that we finished the sync. This
         * will trigger an AOF rewrite, and when done will start appending
         * to the new file. */
A
antirez 已提交
1092
        if (server.aof_state != AOF_OFF) {
1093 1094 1095
            int retry = 10;

            stopAppendOnly();
1096
            while (retry-- && startAppendOnly() == C_ERR) {
A
antirez 已提交
1097
                serverLog(LL_WARNING,"Failed enabling the AOF after successful master synchronization! Trying it again in one second.");
1098 1099 1100
                sleep(1);
            }
            if (!retry) {
A
antirez 已提交
1101
                serverLog(LL_WARNING,"FATAL: this slave instance finished the synchronization with its master, but the AOF can't be turned on. Exiting now.");
1102 1103 1104
                exit(1);
            }
        }
1105
    }
1106 1107 1108 1109 1110 1111

    return;

error:
    replicationAbortSyncTransfer();
    return;
1112 1113
}

A
antirez 已提交
1114
/* Send a synchronous command to the master. Used to send AUTH and
A
antirez 已提交
1115
 * REPLCONF commands before starting the replication with SYNC.
A
antirez 已提交
1116
 *
1117 1118
 * The command returns an sds string representing the result of the
 * operation. On error the first byte is a "-".
A
antirez 已提交
1119 1120 1121 1122 1123 1124 1125 1126 1127 1128 1129 1130 1131 1132 1133 1134 1135 1136 1137 1138 1139
 */
char *sendSynchronousCommand(int fd, ...) {
    va_list ap;
    sds cmd = sdsempty();
    char *arg, buf[256];

    /* Create the command to send to the master, we use simple inline
     * protocol for simplicity as currently we only send simple strings. */
    va_start(ap,fd);
    while(1) {
        arg = va_arg(ap, char*);
        if (arg == NULL) break;

        if (sdslen(cmd) != 0) cmd = sdscatlen(cmd," ",1);
        cmd = sdscat(cmd,arg);
    }
    cmd = sdscatlen(cmd,"\r\n",2);

    /* Transfer command to the server. */
    if (syncWrite(fd,cmd,sdslen(cmd),server.repl_syncio_timeout*1000) == -1) {
        sdsfree(cmd);
1140
        return sdscatprintf(sdsempty(),"-Writing to master: %s",
A
antirez 已提交
1141 1142 1143 1144 1145 1146 1147
                strerror(errno));
    }
    sdsfree(cmd);

    /* Read the reply from the server. */
    if (syncReadLine(fd,buf,sizeof(buf),server.repl_syncio_timeout*1000) == -1)
    {
1148
        return sdscatprintf(sdsempty(),"-Reading from master: %s",
A
antirez 已提交
1149 1150
                strerror(errno));
    }
1151 1152 1153 1154 1155 1156 1157 1158 1159 1160 1161 1162 1163 1164 1165 1166 1167 1168 1169 1170 1171 1172 1173 1174 1175 1176 1177 1178 1179 1180 1181 1182 1183 1184 1185 1186 1187 1188 1189 1190 1191 1192 1193 1194 1195
    return sdsnew(buf);
}

/* Try a partial resynchronization with the master if we are about to reconnect.
 * If there is no cached master structure, at least try to issue a
 * "PSYNC ? -1" command in order to trigger a full resync using the PSYNC
 * command in order to obtain the master run id and the master replication
 * global offset.
 *
 * This function is designed to be called from syncWithMaster(), so the
 * following assumptions are made:
 *
 * 1) We pass the function an already connected socket "fd".
 * 2) This function does not close the file descriptor "fd". However in case
 *    of successful partial resynchronization, the function will reuse
 *    'fd' as file descriptor of the server.master client structure.
 *
 * The function returns:
 *
 * PSYNC_CONTINUE: If the PSYNC command succeded and we can continue.
 * PSYNC_FULLRESYNC: If PSYNC is supported but a full resync is needed.
 *                   In this case the master run_id and global replication
 *                   offset is saved.
 * PSYNC_NOT_SUPPORTED: If the server does not understand PSYNC at all and
 *                      the caller should fall back to SYNC.
 */

#define PSYNC_CONTINUE 0
#define PSYNC_FULLRESYNC 1
#define PSYNC_NOT_SUPPORTED 2
int slaveTryPartialResynchronization(int fd) {
    char *psync_runid;
    char psync_offset[32];
    sds reply;

    /* Initially set repl_master_initial_offset to -1 to mark the current
     * master run_id and offset as not valid. Later if we'll be able to do
     * a FULL resync using the PSYNC command we'll set the offset at the
     * right value, so that this information will be propagated to the
     * client structure representing the master into server.master. */
    server.repl_master_initial_offset = -1;

    if (server.cached_master) {
        psync_runid = server.cached_master->replrunid;
        snprintf(psync_offset,sizeof(psync_offset),"%lld", server.cached_master->reploff+1);
A
antirez 已提交
1196
        serverLog(LL_NOTICE,"Trying a partial resynchronization (request %s:%s).", psync_runid, psync_offset);
1197
    } else {
A
antirez 已提交
1198
        serverLog(LL_NOTICE,"Partial resynchronization not possible (no cached master)");
1199 1200 1201 1202 1203 1204 1205 1206
        psync_runid = "?";
        memcpy(psync_offset,"-1",3);
    }

    /* Issue the PSYNC command */
    reply = sendSynchronousCommand(fd,"PSYNC",psync_runid,psync_offset,NULL);

    if (!strncmp(reply,"+FULLRESYNC",11)) {
1207
        char *runid = NULL, *offset = NULL;
1208 1209 1210 1211 1212 1213 1214 1215 1216

        /* FULL RESYNC, parse the reply in order to extract the run id
         * and the replication offset. */
        runid = strchr(reply,' ');
        if (runid) {
            runid++;
            offset = strchr(runid,' ');
            if (offset) offset++;
        }
A
antirez 已提交
1217 1218
        if (!runid || !offset || (offset-runid-1) != CONFIG_RUN_ID_SIZE) {
            serverLog(LL_WARNING,
1219
                "Master replied with wrong +FULLRESYNC syntax.");
1220 1221 1222
            /* This is an unexpected condition, actually the +FULLRESYNC
             * reply means that the master supports PSYNC, but the reply
             * format seems wrong. To stay safe we blank the master
1223
             * runid to make sure next PSYNCs will fail. */
A
antirez 已提交
1224
            memset(server.repl_master_runid,0,CONFIG_RUN_ID_SIZE+1);
1225 1226
        } else {
            memcpy(server.repl_master_runid, runid, offset-runid-1);
A
antirez 已提交
1227
            server.repl_master_runid[CONFIG_RUN_ID_SIZE] = '\0';
1228
            server.repl_master_initial_offset = strtoll(offset,NULL,10);
A
antirez 已提交
1229
            serverLog(LL_NOTICE,"Full resync from master: %s:%lld",
1230 1231 1232 1233 1234 1235 1236 1237
                server.repl_master_runid,
                server.repl_master_initial_offset);
        }
        /* We are going to full resync, discard the cached master structure. */
        replicationDiscardCachedMaster();
        sdsfree(reply);
        return PSYNC_FULLRESYNC;
    }
A
antirez 已提交
1238

1239 1240
    if (!strncmp(reply,"+CONTINUE",9)) {
        /* Partial resync was accepted, set the replication state accordingly */
A
antirez 已提交
1241
        serverLog(LL_NOTICE,
1242 1243 1244 1245
            "Successful partial resynchronization with master.");
        sdsfree(reply);
        replicationResurrectCachedMaster(fd);
        return PSYNC_CONTINUE;
A
antirez 已提交
1246 1247
    }

1248 1249
    /* If we reach this point we receied either an error since the master does
     * not understand PSYNC, or an unexpected reply from the master.
1250
     * Return PSYNC_NOT_SUPPORTED to the caller in both cases. */
1251 1252 1253

    if (strncmp(reply,"-ERR",4)) {
        /* If it's not an error, log the unexpected event. */
A
antirez 已提交
1254
        serverLog(LL_WARNING,
1255 1256
            "Unexpected reply to PSYNC from master: %s", reply);
    } else {
A
antirez 已提交
1257
        serverLog(LL_NOTICE,
1258 1259 1260 1261 1262 1263
            "Master does not support PSYNC or is in "
            "error state (reply: %s)", reply);
    }
    sdsfree(reply);
    replicationDiscardCachedMaster();
    return PSYNC_NOT_SUPPORTED;
A
antirez 已提交
1264 1265
}

1266
void syncWithMaster(aeEventLoop *el, int fd, void *privdata, int mask) {
A
antirez 已提交
1267
    char tmpfile[256], *err;
1268
    int dfd, maxtries = 5;
1269
    int sockerr = 0, psync_result;
1270
    socklen_t errlen = sizeof(sockerr);
A
antirez 已提交
1271 1272 1273
    UNUSED(el);
    UNUSED(privdata);
    UNUSED(mask);
1274

1275 1276
    /* If this event fired after the user turned the instance into a master
     * with SLAVEOF NO ONE we must just return ASAP. */
A
antirez 已提交
1277
    if (server.repl_state == REPL_STATE_NONE) {
1278 1279 1280 1281
        close(fd);
        return;
    }

1282 1283 1284 1285 1286
    /* Check for errors in the socket. */
    if (getsockopt(fd, SOL_SOCKET, SO_ERROR, &sockerr, &errlen) == -1)
        sockerr = errno;
    if (sockerr) {
        aeDeleteFileEvent(server.el,fd,AE_READABLE|AE_WRITABLE);
A
antirez 已提交
1287
        serverLog(LL_WARNING,"Error condition on socket for SYNC: %s",
1288 1289 1290 1291 1292 1293 1294 1295
            strerror(sockerr));
        goto error;
    }

    /* If we were connecting, it's time to send a non blocking PING, we want to
     * make sure the master is able to reply before going into the actual
     * replication process where we have long timeouts in the order of
     * seconds (in the meantime the slave would block). */
A
antirez 已提交
1296 1297
    if (server.repl_state == REPL_STATE_CONNECTING) {
        serverLog(LL_NOTICE,"Non blocking connect for SYNC fired the event.");
1298 1299 1300
        /* Delete the writable event so that the readable event remains
         * registered and we can wait for the PONG reply. */
        aeDeleteFileEvent(server.el,fd,AE_WRITABLE);
A
antirez 已提交
1301
        server.repl_state = REPL_STATE_RECEIVE_PONG;
1302 1303 1304 1305 1306 1307 1308
        /* Send the PING, don't check for errors at all, we have the timeout
         * that will take care about this. */
        syncWrite(fd,"PING\r\n",6,100);
        return;
    }

    /* Receive the PONG command. */
A
antirez 已提交
1309
    if (server.repl_state == REPL_STATE_RECEIVE_PONG) {
1310 1311 1312 1313 1314 1315 1316 1317 1318 1319 1320
        char buf[1024];

        /* Delete the readable event, we no longer need it now that there is
         * the PING reply to read. */
        aeDeleteFileEvent(server.el,fd,AE_READABLE);

        /* Read the reply with explicit timeout. */
        buf[0] = '\0';
        if (syncReadLine(fd,buf,sizeof(buf),
            server.repl_syncio_timeout*1000) == -1)
        {
A
antirez 已提交
1321
            serverLog(LL_WARNING,
1322 1323 1324 1325 1326
                "I/O error reading PING reply from master: %s",
                strerror(errno));
            goto error;
        }

1327 1328 1329 1330 1331 1332 1333 1334 1335
        /* We accept only two replies as valid, a positive +PONG reply
         * (we just check for "+") or an authentication error.
         * Note that older versions of Redis replied with "operation not
         * permitted" instead of using a proper error code, so we test
         * both. */
        if (buf[0] != '+' &&
            strncmp(buf,"-NOAUTH",7) != 0 &&
            strncmp(buf,"-ERR operation not permitted",28) != 0)
        {
A
antirez 已提交
1336
            serverLog(LL_WARNING,"Error reply to PING from master: '%s'",buf);
1337 1338
            goto error;
        } else {
A
antirez 已提交
1339
            serverLog(LL_NOTICE,
1340 1341 1342
                "Master replied to PING, replication can continue...");
        }
    }
1343 1344 1345

    /* AUTH with the master if required. */
    if(server.masterauth) {
A
antirez 已提交
1346
        err = sendSynchronousCommand(fd,"AUTH",server.masterauth,NULL);
1347
        if (err[0] == '-') {
A
antirez 已提交
1348
            serverLog(LL_WARNING,"Unable to AUTH to MASTER: %s",err);
A
antirez 已提交
1349
            sdsfree(err);
1350 1351
            goto error;
        }
1352
        sdsfree(err);
A
antirez 已提交
1353 1354 1355 1356 1357 1358 1359 1360 1361 1362 1363
    }

    /* Set the slave port, so that Master's INFO command can list the
     * slave listening port correctly. */
    {
        sds port = sdsfromlonglong(server.port);
        err = sendSynchronousCommand(fd,"REPLCONF","listening-port",port,
                                         NULL);
        sdsfree(port);
        /* Ignore the error if any, not all the Redis versions support
         * REPLCONF listening-port. */
1364
        if (err[0] == '-') {
A
antirez 已提交
1365
            serverLog(LL_NOTICE,"(Non critical) Master does not understand REPLCONF listening-port: %s", err);
1366
        }
1367
        sdsfree(err);
1368 1369
    }

1370 1371 1372 1373 1374 1375 1376
    /* Try a partial resynchonization. If we don't have a cached master
     * slaveTryPartialResynchronization() will at least try to use PSYNC
     * to start a full resynchronization so that we get the master run id
     * and the global offset, to try a partial resync at the next
     * reconnection attempt. */
    psync_result = slaveTryPartialResynchronization(fd);
    if (psync_result == PSYNC_CONTINUE) {
A
antirez 已提交
1377
        serverLog(LL_NOTICE, "MASTER <-> SLAVE sync: Master accepted a Partial Resynchronization.");
1378 1379 1380
        return;
    }

1381 1382 1383 1384 1385 1386 1387
    /* PSYNC failed or is not supported: we want our slaves to resync with us
     * as well, if we have any (chained replication case). The mater may
     * transfer us an entirely different data set and we have no way to
     * incrementally feed our slaves after that. */
    disconnectSlaves(); /* Force our slaves to resync with us as well. */
    freeReplicationBacklog(); /* Don't allow our chained slaves to PSYNC. */

1388 1389 1390 1391
    /* Fall back to SYNC if needed. Otherwise psync_result == PSYNC_FULLRESYNC
     * and the server.repl_master_runid and repl_master_initial_offset are
     * already populated. */
    if (psync_result == PSYNC_NOT_SUPPORTED) {
A
antirez 已提交
1392
        serverLog(LL_NOTICE,"Retrying with SYNC...");
1393
        if (syncWrite(fd,"SYNC\r\n",6,server.repl_syncio_timeout*1000) == -1) {
A
antirez 已提交
1394
            serverLog(LL_WARNING,"I/O error writing to MASTER: %s",
1395 1396 1397
                strerror(errno));
            goto error;
        }
1398
    }
1399 1400

    /* Prepare a suitable temp file for bulk transfer */
1401 1402
    while(maxtries--) {
        snprintf(tmpfile,256,
1403
            "temp-%d.%ld.rdb",(int)server.unixtime,(long int)getpid());
1404 1405 1406 1407 1408
        dfd = open(tmpfile,O_CREAT|O_WRONLY|O_EXCL,0644);
        if (dfd != -1) break;
        sleep(1);
    }
    if (dfd == -1) {
A
antirez 已提交
1409
        serverLog(LL_WARNING,"Opening the temp file needed for MASTER <-> SLAVE synchronization: %s",strerror(errno));
1410
        goto error;
1411 1412
    }

1413
    /* Setup the non blocking download of the bulk file. */
1414
    if (aeCreateFileEvent(server.el,fd, AE_READABLE,readSyncBulkPayload,NULL)
1415
            == AE_ERR)
1416
    {
A
antirez 已提交
1417
        serverLog(LL_WARNING,
1418 1419
            "Can't create readable event for SYNC: %s (fd=%d)",
            strerror(errno),fd);
1420
        goto error;
1421
    }
1422

A
antirez 已提交
1423
    server.repl_state = REPL_STATE_TRANSFER;
1424 1425 1426
    server.repl_transfer_size = -1;
    server.repl_transfer_read = 0;
    server.repl_transfer_last_fsync_off = 0;
1427
    server.repl_transfer_fd = dfd;
1428
    server.repl_transfer_lastio = server.unixtime;
1429
    server.repl_transfer_tmpfile = zstrdup(tmpfile);
1430 1431 1432 1433
    return;

error:
    close(fd);
1434
    server.repl_transfer_s = -1;
A
antirez 已提交
1435
    server.repl_state = REPL_STATE_CONNECT;
1436 1437 1438 1439 1440 1441
    return;
}

int connectWithMaster(void) {
    int fd;

1442
    fd = anetTcpNonBlockBestEffortBindConnect(NULL,
A
antirez 已提交
1443
        server.masterhost,server.masterport,NET_FIRST_BIND_ADDR);
1444
    if (fd == -1) {
A
antirez 已提交
1445
        serverLog(LL_WARNING,"Unable to connect to MASTER: %s",
1446
            strerror(errno));
1447
        return C_ERR;
1448 1449
    }

1450
    if (aeCreateFileEvent(server.el,fd,AE_READABLE|AE_WRITABLE,syncWithMaster,NULL) ==
1451
            AE_ERR)
1452 1453
    {
        close(fd);
A
antirez 已提交
1454
        serverLog(LL_WARNING,"Can't create readable event for SYNC");
1455
        return C_ERR;
1456 1457
    }

1458
    server.repl_transfer_lastio = server.unixtime;
1459
    server.repl_transfer_s = fd;
A
antirez 已提交
1460
    server.repl_state = REPL_STATE_CONNECTING;
1461
    return C_OK;
1462 1463
}

1464 1465 1466 1467 1468
/* This function can be called when a non blocking connection is currently
 * in progress to undo it. */
void undoConnectWithMaster(void) {
    int fd = server.repl_transfer_s;

A
antirez 已提交
1469 1470
    serverAssert(server.repl_state == REPL_STATE_CONNECTING ||
                server.repl_state == REPL_STATE_RECEIVE_PONG);
1471 1472 1473
    aeDeleteFileEvent(server.el,fd,AE_READABLE|AE_WRITABLE);
    close(fd);
    server.repl_transfer_s = -1;
A
antirez 已提交
1474
    server.repl_state = REPL_STATE_CONNECT;
1475 1476
}

1477 1478 1479 1480 1481
/* This function aborts a non blocking replication attempt if there is one
 * in progress, by canceling the non-blocking connect attempt or
 * the initial bulk transfer.
 *
 * If there was a replication handshake in progress 1 is returned and
A
antirez 已提交
1482
 * the replication state (server.repl_state) set to REPL_STATE_CONNECT.
1483 1484 1485
 *
 * Otherwise zero is returned and no operation is perforemd at all. */
int cancelReplicationHandshake(void) {
A
antirez 已提交
1486
    if (server.repl_state == REPL_STATE_TRANSFER) {
1487
        replicationAbortSyncTransfer();
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    } else if (server.repl_state == REPL_STATE_CONNECTING ||
             server.repl_state == REPL_STATE_RECEIVE_PONG)
1490 1491 1492 1493 1494 1495 1496 1497
    {
        undoConnectWithMaster();
    } else {
        return 0;
    }
    return 1;
}

1498 1499 1500
/* Set replication to the specified master address and port. */
void replicationSetMaster(char *ip, int port) {
    sdsfree(server.masterhost);
1501
    server.masterhost = sdsnew(ip);
1502 1503
    server.masterport = port;
    if (server.master) freeClient(server.master);
1504
    disconnectAllBlockedClients(); /* Clients blocked in master, now slave. */
1505 1506 1507 1508
    disconnectSlaves(); /* Force our slaves to resync with us as well. */
    replicationDiscardCachedMaster(); /* Don't try a PSYNC. */
    freeReplicationBacklog(); /* Don't allow our chained slaves to PSYNC. */
    cancelReplicationHandshake();
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    server.repl_state = REPL_STATE_CONNECT;
1510
    server.master_repl_offset = 0;
1511
    server.repl_down_since = 0;
1512 1513 1514 1515 1516 1517 1518
}

/* Cancel replication, setting the instance as a master itself. */
void replicationUnsetMaster(void) {
    if (server.masterhost == NULL) return; /* Nothing to do. */
    sdsfree(server.masterhost);
    server.masterhost = NULL;
1519 1520 1521 1522 1523 1524 1525 1526 1527 1528 1529
    if (server.master) {
        if (listLength(server.slaves) == 0) {
            /* If this instance is turned into a master and there are no
             * slaves, it inherits the replication offset from the master.
             * Under certain conditions this makes replicas comparable by
             * replication offset to understand what is the most updated. */
            server.master_repl_offset = server.master->reploff;
            freeReplicationBacklog();
        }
        freeClient(server.master);
    }
1530 1531
    replicationDiscardCachedMaster();
    cancelReplicationHandshake();
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    server.repl_state = REPL_STATE_NONE;
1533 1534
}

1535 1536 1537 1538 1539 1540
/* This function is called when the slave lose the connection with the
 * master into an unexpected way. */
void replicationHandleMasterDisconnection(void) {
    server.master = NULL;
    server.repl_state = REPL_STATE_CONNECT;
    server.repl_down_since = server.unixtime;
1541 1542 1543
    /* We lost connection with our master, don't disconnect slaves yet,
     * maybe we'll be able to PSYNC with our master later. We'll disconnect
     * the slaves only if we'll have to do a full resync with our master. */
1544 1545
}

1546
void slaveofCommand(client *c) {
1547 1548 1549 1550 1551 1552 1553 1554 1555
    /* SLAVEOF is not allowed in cluster mode as replication is automatically
     * configured using the current address of the master node. */
    if (server.cluster_enabled) {
        addReplyError(c,"SLAVEOF not allowed in cluster mode.");
        return;
    }

    /* The special host/port combination "NO" "ONE" turns the instance
     * into a master. Otherwise the new master address is set. */
1556 1557 1558
    if (!strcasecmp(c->argv[1]->ptr,"no") &&
        !strcasecmp(c->argv[2]->ptr,"one")) {
        if (server.masterhost) {
1559
            replicationUnsetMaster();
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            serverLog(LL_NOTICE,"MASTER MODE enabled (user request)");
1561 1562
        }
    } else {
1563 1564
        long port;

1565
        if ((getLongFromObjectOrReply(c, c->argv[2], &port, NULL) != C_OK))
1566 1567 1568 1569 1570
            return;

        /* Check if we are already attached to the specified slave */
        if (server.masterhost && !strcasecmp(server.masterhost,c->argv[1]->ptr)
            && server.masterport == port) {
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            serverLog(LL_NOTICE,"SLAVE OF would result into synchronization with the master we are already connected with. No operation performed.");
1572 1573 1574 1575 1576
            addReplySds(c,sdsnew("+OK Already connected to specified master\r\n"));
            return;
        }
        /* There was no previous master or the user specified a different one,
         * we can continue. */
1577
        replicationSetMaster(c->argv[1]->ptr, port);
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        serverLog(LL_NOTICE,"SLAVE OF %s:%d enabled (user request)",
1579 1580 1581 1582
            server.masterhost, server.masterport);
    }
    addReply(c,shared.ok);
}
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/* ROLE command: provide information about the role of the instance
 * (master or slave) and additional information related to replication
 * in an easy to process format. */
1587
void roleCommand(client *c) {
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    if (server.masterhost == NULL) {
        listIter li;
        listNode *ln;
        void *mbcount;
        int slaves = 0;

        addReplyMultiBulkLen(c,3);
        addReplyBulkCBuffer(c,"master",6);
        addReplyLongLong(c,server.master_repl_offset);
        mbcount = addDeferredMultiBulkLength(c);
        listRewind(server.slaves,&li);
        while((ln = listNext(&li))) {
1600
            client *slave = ln->value;
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            char ip[NET_IP_STR_LEN];
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            if (anetPeerToString(slave->fd,ip,sizeof(ip),NULL) == -1) continue;
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            if (slave->replstate != SLAVE_STATE_ONLINE) continue;
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            addReplyMultiBulkLen(c,3);
            addReplyBulkCString(c,ip);
            addReplyBulkLongLong(c,slave->slave_listening_port);
            addReplyBulkLongLong(c,slave->repl_ack_off);
            slaves++;
        }
        setDeferredMultiBulkLength(c,mbcount,slaves);
    } else {
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        char *slavestate = NULL;

1615
        addReplyMultiBulkLen(c,5);
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        addReplyBulkCBuffer(c,"slave",5);
        addReplyBulkCString(c,server.masterhost);
        addReplyLongLong(c,server.masterport);
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        switch(server.repl_state) {
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        case REPL_STATE_NONE: slavestate = "none"; break;
        case REPL_STATE_CONNECT: slavestate = "connect"; break;
        case REPL_STATE_CONNECTING: slavestate = "connecting"; break;
        case REPL_STATE_RECEIVE_PONG: /* see next */
        case REPL_STATE_TRANSFER: slavestate = "sync"; break;
        case REPL_STATE_CONNECTED: slavestate = "connected"; break;
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        default: slavestate = "unknown"; break;
        }
        addReplyBulkCString(c,slavestate);
        addReplyLongLong(c,server.master ? server.master->reploff : -1);
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    }
}

1633 1634 1635 1636
/* Send a REPLCONF ACK command to the master to inform it about the current
 * processed offset. If we are not connected with a master, the command has
 * no effects. */
void replicationSendAck(void) {
1637
    client *c = server.master;
1638 1639

    if (c != NULL) {
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        c->flags |= CLIENT_MASTER_FORCE_REPLY;
1641 1642 1643 1644
        addReplyMultiBulkLen(c,3);
        addReplyBulkCString(c,"REPLCONF");
        addReplyBulkCString(c,"ACK");
        addReplyBulkLongLong(c,c->reploff);
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        c->flags &= ~CLIENT_MASTER_FORCE_REPLY;
1646 1647 1648
    }
}

1649 1650 1651 1652 1653 1654 1655 1656 1657 1658 1659 1660 1661 1662 1663 1664 1665 1666 1667 1668
/* ---------------------- MASTER CACHING FOR PSYNC -------------------------- */

/* In order to implement partial synchronization we need to be able to cache
 * our master's client structure after a transient disconnection.
 * It is cached into server.cached_master and flushed away using the following
 * functions. */

/* This function is called by freeClient() in order to cache the master
 * client structure instead of destryoing it. freeClient() will return
 * ASAP after this function returns, so every action needed to avoid problems
 * with a client that is really "suspended" has to be done by this function.
 *
 * The other functions that will deal with the cached master are:
 *
 * replicationDiscardCachedMaster() that will make sure to kill the client
 * as for some reason we don't want to use it in the future.
 *
 * replicationResurrectCachedMaster() that is used after a successful PSYNC
 * handshake in order to reactivate the cached master.
 */
1669
void replicationCacheMaster(client *c) {
1670 1671
    listNode *ln;

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    serverAssert(server.master != NULL && server.cached_master == NULL);
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    serverLog(LL_NOTICE,"Caching the disconnected master state.");
1674 1675 1676 1677

    /* Remove from the list of clients, we don't want this client to be
     * listed by CLIENT LIST or processed in any way by batch operations. */
    ln = listSearchKey(server.clients,c);
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    serverAssert(ln != NULL);
1679 1680 1681 1682 1683 1684 1685 1686 1687 1688 1689 1690 1691 1692 1693
    listDelNode(server.clients,ln);

    /* Save the master. Server.master will be set to null later by
     * replicationHandleMasterDisconnection(). */
    server.cached_master = server.master;

    /* Remove the event handlers and close the socket. We'll later reuse
     * the socket of the new connection with the master during PSYNC. */
    aeDeleteFileEvent(server.el,c->fd,AE_READABLE);
    aeDeleteFileEvent(server.el,c->fd,AE_WRITABLE);
    close(c->fd);

    /* Set fd to -1 so that we can safely call freeClient(c) later. */
    c->fd = -1;

1694 1695 1696 1697 1698 1699
    /* Invalidate the Peer ID cache. */
    if (c->peerid) {
        sdsfree(c->peerid);
        c->peerid = NULL;
    }

1700 1701 1702 1703 1704 1705 1706 1707 1708 1709 1710
    /* Caching the master happens instead of the actual freeClient() call,
     * so make sure to adjust the replication state. This function will
     * also set server.master to NULL. */
    replicationHandleMasterDisconnection();
}

/* Free a cached master, called when there are no longer the conditions for
 * a partial resync on reconnection. */
void replicationDiscardCachedMaster(void) {
    if (server.cached_master == NULL) return;

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    serverLog(LL_NOTICE,"Discarding previously cached master state.");
    server.cached_master->flags &= ~CLIENT_MASTER;
1713 1714 1715 1716 1717 1718 1719
    freeClient(server.cached_master);
    server.cached_master = NULL;
}

/* Turn the cached master into the current master, using the file descriptor
 * passed as argument as the socket for the new master.
 *
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 * This function is called when successfully setup a partial resynchronization
1721 1722 1723 1724 1725 1726
 * so the stream of data that we'll receive will start from were this
 * master left. */
void replicationResurrectCachedMaster(int newfd) {
    server.master = server.cached_master;
    server.cached_master = NULL;
    server.master->fd = newfd;
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    server.master->flags &= ~(CLIENT_CLOSE_AFTER_REPLY|CLIENT_CLOSE_ASAP);
1728 1729
    server.master->authenticated = 1;
    server.master->lastinteraction = server.unixtime;
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    server.repl_state = REPL_STATE_CONNECTED;
1731 1732 1733 1734 1735

    /* Re-add to the list of clients. */
    listAddNodeTail(server.clients,server.master);
    if (aeCreateFileEvent(server.el, newfd, AE_READABLE,
                          readQueryFromClient, server.master)) {
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        serverLog(LL_WARNING,"Error resurrecting the cached master, impossible to add the readable handler: %s", strerror(errno));
1737 1738
        freeClientAsync(server.master); /* Close ASAP. */
    }
1739 1740 1741 1742 1743 1744

    /* We may also need to install the write handler as well if there is
     * pending data in the write buffers. */
    if (server.master->bufpos || listLength(server.master->reply)) {
        if (aeCreateFileEvent(server.el, newfd, AE_WRITABLE,
                          sendReplyToClient, server.master)) {
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            serverLog(LL_WARNING,"Error resurrecting the cached master, impossible to add the writable handler: %s", strerror(errno));
1746 1747 1748
            freeClientAsync(server.master); /* Close ASAP. */
        }
    }
1749 1750
}

1751 1752 1753 1754 1755 1756 1757 1758 1759 1760 1761 1762 1763 1764 1765
/* ------------------------- MIN-SLAVES-TO-WRITE  --------------------------- */

/* This function counts the number of slaves with lag <= min-slaves-max-lag.
 * If the option is active, the server will prevent writes if there are not
 * enough connected slaves with the specified lag (or less). */
void refreshGoodSlavesCount(void) {
    listIter li;
    listNode *ln;
    int good = 0;

    if (!server.repl_min_slaves_to_write ||
        !server.repl_min_slaves_max_lag) return;

    listRewind(server.slaves,&li);
    while((ln = listNext(&li))) {
1766
        client *slave = ln->value;
1767 1768
        time_t lag = server.unixtime - slave->repl_ack_time;

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        if (slave->replstate == SLAVE_STATE_ONLINE &&
1770 1771 1772 1773 1774
            lag <= server.repl_min_slaves_max_lag) good++;
    }
    server.repl_good_slaves_count = good;
}

1775 1776 1777 1778 1779
/* ----------------------- REPLICATION SCRIPT CACHE --------------------------
 * The goal of this code is to keep track of scripts already sent to every
 * connected slave, in order to be able to replicate EVALSHA as it is without
 * translating it to EVAL every time it is possible.
 *
1780
 * We use a capped collection implemented by a hash table for fast lookup
1781 1782 1783 1784 1785 1786 1787 1788 1789 1790 1791 1792 1793 1794 1795 1796 1797 1798 1799 1800 1801 1802 1803 1804 1805 1806 1807 1808 1809 1810 1811 1812 1813
 * of scripts we can send as EVALSHA, plus a linked list that is used for
 * eviction of the oldest entry when the max number of items is reached.
 *
 * We don't care about taking a different cache for every different slave
 * since to fill the cache again is not very costly, the goal of this code
 * is to avoid that the same big script is trasmitted a big number of times
 * per second wasting bandwidth and processor speed, but it is not a problem
 * if we need to rebuild the cache from scratch from time to time, every used
 * script will need to be transmitted a single time to reappear in the cache.
 *
 * This is how the system works:
 *
 * 1) Every time a new slave connects, we flush the whole script cache.
 * 2) We only send as EVALSHA what was sent to the master as EVALSHA, without
 *    trying to convert EVAL into EVALSHA specifically for slaves.
 * 3) Every time we trasmit a script as EVAL to the slaves, we also add the
 *    corresponding SHA1 of the script into the cache as we are sure every
 *    slave knows about the script starting from now.
 * 4) On SCRIPT FLUSH command, we replicate the command to all the slaves
 *    and at the same time flush the script cache.
 * 5) When the last slave disconnects, flush the cache.
 * 6) We handle SCRIPT LOAD as well since that's how scripts are loaded
 *    in the master sometimes.
 */

/* Initialize the script cache, only called at startup. */
void replicationScriptCacheInit(void) {
    server.repl_scriptcache_size = 10000;
    server.repl_scriptcache_dict = dictCreate(&replScriptCacheDictType,NULL);
    server.repl_scriptcache_fifo = listCreate();
}

/* Empty the script cache. Should be called every time we are no longer sure
1814 1815 1816 1817 1818 1819 1820 1821 1822 1823
 * that every slave knows about all the scripts in our set, or when the
 * current AOF "context" is no longer aware of the script. In general we
 * should flush the cache:
 *
 * 1) Every time a new slave reconnects to this master and performs a
 *    full SYNC (PSYNC does not require flushing).
 * 2) Every time an AOF rewrite is performed.
 * 3) Every time we are left without slaves at all, and AOF is off, in order
 *    to reclaim otherwise unused memory.
 */
1824
void replicationScriptCacheFlush(void) {
1825
    dictEmpty(server.repl_scriptcache_dict,NULL);
1826 1827 1828 1829 1830 1831 1832 1833 1834 1835 1836 1837 1838 1839 1840 1841 1842
    listRelease(server.repl_scriptcache_fifo);
    server.repl_scriptcache_fifo = listCreate();
}

/* Add an entry into the script cache, if we reach max number of entries the
 * oldest is removed from the list. */
void replicationScriptCacheAdd(sds sha1) {
    int retval;
    sds key = sdsdup(sha1);

    /* Evict oldest. */
    if (listLength(server.repl_scriptcache_fifo) == server.repl_scriptcache_size)
    {
        listNode *ln = listLast(server.repl_scriptcache_fifo);
        sds oldest = listNodeValue(ln);

        retval = dictDelete(server.repl_scriptcache_dict,oldest);
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        serverAssert(retval == DICT_OK);
1844 1845 1846 1847 1848 1849
        listDelNode(server.repl_scriptcache_fifo,ln);
    }

    /* Add current. */
    retval = dictAdd(server.repl_scriptcache_dict,key,NULL);
    listAddNodeHead(server.repl_scriptcache_fifo,key);
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    serverAssert(retval == DICT_OK);
1851 1852 1853 1854 1855
}

/* Returns non-zero if the specified entry exists inside the cache, that is,
 * if all the slaves are aware of this script SHA1. */
int replicationScriptCacheExists(sds sha1) {
1856
    return dictFind(server.repl_scriptcache_dict,sha1) != NULL;
1857 1858
}

1859 1860 1861 1862 1863 1864 1865 1866 1867 1868 1869 1870 1871 1872 1873 1874 1875 1876 1877 1878 1879 1880 1881 1882 1883 1884 1885 1886 1887 1888 1889 1890 1891 1892 1893 1894 1895 1896 1897 1898 1899 1900 1901
/* ----------------------- SYNCHRONOUS REPLICATION --------------------------
 * Redis synchronous replication design can be summarized in points:
 *
 * - Redis masters have a global replication offset, used by PSYNC.
 * - Master increment the offset every time new commands are sent to slaves.
 * - Slaves ping back masters with the offset processed so far.
 *
 * So synchronous replication adds a new WAIT command in the form:
 *
 *   WAIT <num_replicas> <milliseconds_timeout>
 *
 * That returns the number of replicas that processed the query when
 * we finally have at least num_replicas, or when the timeout was
 * reached.
 *
 * The command is implemented in this way:
 *
 * - Every time a client processes a command, we remember the replication
 *   offset after sending that command to the slaves.
 * - When WAIT is called, we ask slaves to send an acknowledgement ASAP.
 *   The client is blocked at the same time (see blocked.c).
 * - Once we receive enough ACKs for a given offset or when the timeout
 *   is reached, the WAIT command is unblocked and the reply sent to the
 *   client.
 */

/* This just set a flag so that we broadcast a REPLCONF GETACK command
 * to all the slaves in the beforeSleep() function. Note that this way
 * we "group" all the clients that want to wait for synchronouns replication
 * in a given event loop iteration, and send a single GETACK for them all. */
void replicationRequestAckFromSlaves(void) {
    server.get_ack_from_slaves = 1;
}

/* Return the number of slaves that already acknowledged the specified
 * replication offset. */
int replicationCountAcksByOffset(long long offset) {
    listIter li;
    listNode *ln;
    int count = 0;

    listRewind(server.slaves,&li);
    while((ln = listNext(&li))) {
1902
        client *slave = ln->value;
1903

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        if (slave->replstate != SLAVE_STATE_ONLINE) continue;
1905 1906 1907 1908 1909 1910 1911
        if (slave->repl_ack_off >= offset) count++;
    }
    return count;
}

/* WAIT for N replicas to acknowledge the processing of our latest
 * write command (and all the previous commands). */
1912
void waitCommand(client *c) {
1913 1914 1915 1916 1917
    mstime_t timeout;
    long numreplicas, ackreplicas;
    long long offset = c->woff;

    /* Argument parsing. */
1918
    if (getLongFromObjectOrReply(c,c->argv[1],&numreplicas,NULL) != C_OK)
1919 1920
        return;
    if (getTimeoutFromObjectOrReply(c,c->argv[2],&timeout,UNIT_MILLISECONDS)
1921
        != C_OK) return;
1922 1923 1924

    /* First try without blocking at all. */
    ackreplicas = replicationCountAcksByOffset(c->woff);
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    if (ackreplicas >= numreplicas || c->flags & CLIENT_MULTI) {
1926 1927 1928 1929 1930 1931 1932 1933 1934 1935
        addReplyLongLong(c,ackreplicas);
        return;
    }

    /* Otherwise block the client and put it into our list of clients
     * waiting for ack from slaves. */
    c->bpop.timeout = timeout;
    c->bpop.reploffset = offset;
    c->bpop.numreplicas = numreplicas;
    listAddNodeTail(server.clients_waiting_acks,c);
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    blockClient(c,BLOCKED_WAIT);
1937 1938 1939 1940 1941 1942 1943 1944 1945 1946

    /* Make sure that the server will send an ACK request to all the slaves
     * before returning to the event loop. */
    replicationRequestAckFromSlaves();
}

/* This is called by unblockClient() to perform the blocking op type
 * specific cleanup. We just remove the client from the list of clients
 * waiting for replica acks. Never call it directly, call unblockClient()
 * instead. */
1947
void unblockClientWaitingReplicas(client *c) {
1948
    listNode *ln = listSearchKey(server.clients_waiting_acks,c);
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    serverAssert(ln != NULL);
1950 1951 1952 1953 1954 1955 1956 1957 1958 1959 1960 1961 1962 1963
    listDelNode(server.clients_waiting_acks,ln);
}

/* Check if there are clients blocked in WAIT that can be unblocked since
 * we received enough ACKs from slaves. */
void processClientsWaitingReplicas(void) {
    long long last_offset = 0;
    int last_numreplicas = 0;

    listIter li;
    listNode *ln;

    listRewind(server.clients_waiting_acks,&li);
    while((ln = listNext(&li))) {
1964
        client *c = ln->value;
1965 1966 1967 1968 1969 1970 1971 1972 1973 1974 1975 1976 1977 1978 1979 1980 1981 1982 1983 1984 1985 1986 1987

        /* Every time we find a client that is satisfied for a given
         * offset and number of replicas, we remember it so the next client
         * may be unblocked without calling replicationCountAcksByOffset()
         * if the requested offset / replicas were equal or less. */
        if (last_offset && last_offset > c->bpop.reploffset &&
                           last_numreplicas > c->bpop.numreplicas)
        {
            unblockClient(c);
            addReplyLongLong(c,last_numreplicas);
        } else {
            int numreplicas = replicationCountAcksByOffset(c->bpop.reploffset);

            if (numreplicas >= c->bpop.numreplicas) {
                last_offset = c->bpop.reploffset;
                last_numreplicas = numreplicas;
                unblockClient(c);
                addReplyLongLong(c,numreplicas);
            }
        }
    }
}

1988 1989 1990 1991 1992 1993 1994 1995 1996 1997 1998 1999 2000 2001 2002 2003 2004 2005 2006 2007
/* Return the slave replication offset for this instance, that is
 * the offset for which we already processed the master replication stream. */
long long replicationGetSlaveOffset(void) {
    long long offset = 0;

    if (server.masterhost != NULL) {
        if (server.master) {
            offset = server.master->reploff;
        } else if (server.cached_master) {
            offset = server.cached_master->reploff;
        }
    }
    /* offset may be -1 when the master does not support it at all, however
     * this function is designed to return an offset that can express the
     * amount of data processed by the master, so we return a positive
     * integer. */
    if (offset < 0) offset = 0;
    return offset;
}

2008
/* --------------------------- REPLICATION CRON  ---------------------------- */
2009

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/* Replication cron function, called 1 time per second. */
2011
void replicationCron(void) {
2012
    /* Non blocking connection timeout? */
2013
    if (server.masterhost &&
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        (server.repl_state == REPL_STATE_CONNECTING ||
         server.repl_state == REPL_STATE_RECEIVE_PONG) &&
2016 2017
        (time(NULL)-server.repl_transfer_lastio) > server.repl_timeout)
    {
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        serverLog(LL_WARNING,"Timeout connecting to the MASTER...");
2019 2020 2021
        undoConnectWithMaster();
    }

2022
    /* Bulk transfer I/O timeout? */
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    if (server.masterhost && server.repl_state == REPL_STATE_TRANSFER &&
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        (time(NULL)-server.repl_transfer_lastio) > server.repl_timeout)
2025
    {
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        serverLog(LL_WARNING,"Timeout receiving bulk data from MASTER... If the problem persists try to set the 'repl-timeout' parameter in redis.conf to a larger value.");
2027 2028 2029
        replicationAbortSyncTransfer();
    }

2030
    /* Timed out master when we are an already connected slave? */
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    if (server.masterhost && server.repl_state == REPL_STATE_CONNECTED &&
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        (time(NULL)-server.master->lastinteraction) > server.repl_timeout)
2033
    {
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        serverLog(LL_WARNING,"MASTER timeout: no data nor PING received...");
2035 2036 2037
        freeClient(server.master);
    }

2038
    /* Check if we should connect to a MASTER */
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    if (server.repl_state == REPL_STATE_CONNECT) {
        serverLog(LL_NOTICE,"Connecting to MASTER %s:%d",
2041
            server.masterhost, server.masterport);
2042
        if (connectWithMaster() == C_OK) {
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            serverLog(LL_NOTICE,"MASTER <-> SLAVE sync started");
2044 2045
        }
    }
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2047 2048 2049 2050
    /* Send ACK to master from time to time.
     * Note that we do not send periodic acks to masters that don't
     * support PSYNC and replication offsets. */
    if (server.masterhost && server.master &&
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        !(server.master->flags & CLIENT_PRE_PSYNC))
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        replicationSendAck();
2053

2054 2055 2056 2057
    /* If we have attached slaves, PING them from time to time.
     * So slaves can implement an explicit timeout to masters, and will
     * be able to detect a link disconnection even if the TCP connection
     * will not actually go down. */
2058
    if (!(server.cronloops % (server.repl_ping_slave_period * server.hz))) {
2059 2060
        listIter li;
        listNode *ln;
2061
        robj *ping_argv[1];
2062

2063 2064 2065 2066 2067
        /* First, send PING */
        ping_argv[0] = createStringObject("PING",4);
        replicationFeedSlaves(server.slaves, server.slaveseldb, ping_argv, 1);
        decrRefCount(ping_argv[0]);

2068 2069
        /* Second, send a newline to all the slaves in pre-synchronization
         * stage, that is, slaves waiting for the master to create the RDB file.
2070 2071
         * The newline will be ignored by the slave but will refresh the
         * last-io timer preventing a timeout. */
2072 2073
        listRewind(server.slaves,&li);
        while((ln = listNext(&li))) {
2074
            client *slave = ln->value;
2075

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            if (slave->replstate == SLAVE_STATE_WAIT_BGSAVE_START ||
                (slave->replstate == SLAVE_STATE_WAIT_BGSAVE_END &&
                 server.rdb_child_type != RDB_CHILD_TYPE_SOCKET))
2079
            {
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                if (write(slave->fd, "\n", 1) == -1) {
                    /* Don't worry, it's just a ping. */
                }
2083 2084 2085
            }
        }
    }
2086

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    /* Disconnect timedout slaves. */
    if (listLength(server.slaves)) {
        listIter li;
        listNode *ln;

        listRewind(server.slaves,&li);
        while((ln = listNext(&li))) {
2094
            client *slave = ln->value;
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2096 2097
            if (slave->replstate != SLAVE_STATE_ONLINE) continue;
            if (slave->flags & CLIENT_PRE_PSYNC) continue;
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            if ((server.unixtime - slave->repl_ack_time) > server.repl_timeout)
            {
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                serverLog(LL_WARNING, "Disconnecting timedout slave: %s",
2101 2102
                    replicationGetSlaveName(slave));
                freeClient(slave);
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2103 2104 2105 2106
            }
        }
    }

2107 2108 2109 2110 2111 2112 2113 2114 2115
    /* If we have no attached slaves and there is a replication backlog
     * using memory, free it after some (configured) time. */
    if (listLength(server.slaves) == 0 && server.repl_backlog_time_limit &&
        server.repl_backlog)
    {
        time_t idle = server.unixtime - server.repl_no_slaves_since;

        if (idle > server.repl_backlog_time_limit) {
            freeReplicationBacklog();
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            serverLog(LL_NOTICE,
2117
                "Replication backlog freed after %d seconds "
2118 2119
                "without connected slaves.",
                (int) server.repl_backlog_time_limit);
2120 2121
        }
    }
2122

2123 2124 2125 2126
    /* If AOF is disabled and we no longer have attached slaves, we can
     * free our Replication Script Cache as there is no need to propagate
     * EVALSHA at all. */
    if (listLength(server.slaves) == 0 &&
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        server.aof_state == AOF_OFF &&
2128 2129 2130 2131 2132
        listLength(server.repl_scriptcache_fifo) != 0)
    {
        replicationScriptCacheFlush();
    }

2133 2134
    /* If we are using diskless replication and there are slaves waiting
     * in WAIT_BGSAVE_START state, check if enough seconds elapsed and
2135 2136 2137 2138 2139 2140
     * start a BGSAVE.
     *
     * This code is also useful to trigger a BGSAVE if the diskless
     * replication was turned off with CONFIG SET, while there were already
     * slaves in WAIT_BGSAVE_START state. */
    if (server.rdb_child_pid == -1 && server.aof_child_pid == -1) {
2141 2142 2143 2144 2145 2146 2147
        time_t idle, max_idle = 0;
        int slaves_waiting = 0;
        listNode *ln;
        listIter li;

        listRewind(server.slaves,&li);
        while((ln = listNext(&li))) {
2148
            client *slave = ln->value;
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            if (slave->replstate == SLAVE_STATE_WAIT_BGSAVE_START) {
2150 2151 2152 2153 2154 2155
                idle = server.unixtime - slave->lastinteraction;
                if (idle > max_idle) max_idle = idle;
                slaves_waiting++;
            }
        }

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        if (slaves_waiting && max_idle > server.repl_diskless_sync_delay) {
            /* Start a BGSAVE. Usually with socket target, or with disk target
             * if there was a recent socket -> disk config change. */
2159
            if (startBgsaveForReplication() == C_OK) {
2160
                /* It started! We need to change the state of slaves
2161 2162 2163 2164 2165
                 * from WAIT_BGSAVE_START to WAIT_BGSAVE_END in case
                 * the current target is disk. Otherwise it was already done
                 * by rdbSaveToSlavesSockets() which is called by
                 * startBgsaveForReplication(). */
                listRewind(server.slaves,&li);
2166
                while((ln = listNext(&li))) {
2167
                    client *slave = ln->value;
A
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                    if (slave->replstate == SLAVE_STATE_WAIT_BGSAVE_START) {
2169
                        replicationSetupSlaveForFullResync(slave,
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2170 2171
                            getPsyncInitialOffset());
                    }
2172 2173 2174 2175 2176
                }
            }
        }
    }

2177 2178
    /* Refresh the number of slaves with lag <= min-slaves-max-lag. */
    refreshGoodSlavesCount();
2179
}