aof.c 36.2 KB
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#include "redis.h"
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#include "bio.h"
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#include "rio.h"
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#include <signal.h>
#include <fcntl.h>
#include <sys/stat.h>
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#include <sys/types.h>
#include <sys/time.h>
#include <sys/resource.h>
#include <sys/wait.h>
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void aofUpdateCurrentSize(void);

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void aof_background_fsync(int fd) {
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    bioCreateBackgroundJob(REDIS_BIO_AOF_FSYNC,(void*)(long)fd,NULL,NULL);
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}

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/* Called when the user switches from "appendonly yes" to "appendonly no"
 * at runtime using the CONFIG command. */
void stopAppendOnly(void) {
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    flushAppendOnlyFile(1);
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    aof_fsync(server.appendfd);
    close(server.appendfd);

    server.appendfd = -1;
    server.appendseldb = -1;
    server.appendonly = 0;
    /* rewrite operation in progress? kill it, wait child exit */
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    if (server.bgrewritechildpid != -1) {
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        int statloc;

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        if (kill(server.bgrewritechildpid,SIGKILL) != -1)
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            wait3(&statloc,0,NULL);
        /* reset the buffer accumulating changes while the child saves */
        sdsfree(server.bgrewritebuf);
        server.bgrewritebuf = sdsempty();
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        server.bgrewritechildpid = -1;
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    }
}

/* Called when the user switches from "appendonly no" to "appendonly yes"
 * at runtime using the CONFIG command. */
int startAppendOnly(void) {
    server.appendonly = 1;
    server.lastfsync = time(NULL);
    server.appendfd = open(server.appendfilename,O_WRONLY|O_APPEND|O_CREAT,0644);
    if (server.appendfd == -1) {
        redisLog(REDIS_WARNING,"Used tried to switch on AOF via CONFIG, but I can't open the AOF file: %s",strerror(errno));
        return REDIS_ERR;
    }
    if (rewriteAppendOnlyFileBackground() == REDIS_ERR) {
        server.appendonly = 0;
        close(server.appendfd);
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        redisLog(REDIS_WARNING,"User tried turning on AOF with CONFIG SET but I can't trigger a background AOF rewrite operation. Check the above logs for more info about the error.");
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        return REDIS_ERR;
    }
    return REDIS_OK;
}

/* Write the append only file buffer on disk.
 *
 * Since we are required to write the AOF before replying to the client,
 * and the only way the client socket can get a write is entering when the
 * the event loop, we accumulate all the AOF writes in a memory
 * buffer and write it on disk using this function just before entering
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 * the event loop again.
 *
 * About the 'force' argument:
 *
 * When the fsync policy is set to 'everysec' we may delay the flush if there
 * is still an fsync() going on in the background thread, since for instance
 * on Linux write(2) will be blocked by the background fsync anyway.
 * When this happens we remember that there is some aof buffer to be
 * flushed ASAP, and will try to do that in the serverCron() function.
 *
 * However if force is set to 1 we'll write regardless of the background
 * fsync. */
void flushAppendOnlyFile(int force) {
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    ssize_t nwritten;
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    int sync_in_progress = 0;
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    if (sdslen(server.aofbuf) == 0) return;

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    if (server.appendfsync == APPENDFSYNC_EVERYSEC)
        sync_in_progress = bioPendingJobsOfType(REDIS_BIO_AOF_FSYNC) != 0;

    if (server.appendfsync == APPENDFSYNC_EVERYSEC && !force) {
        /* With this append fsync policy we do background fsyncing.
         * If the fsync is still in progress we can try to delay
         * the write for a couple of seconds. */
        if (sync_in_progress) {
            if (server.aof_flush_postponed_start == 0) {
                /* No previous write postponinig, remember that we are
                 * postponing the flush and return. */
                server.aof_flush_postponed_start = server.unixtime;
                return;
            } else if (server.unixtime - server.aof_flush_postponed_start < 2) {
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                /* We were already waiting for fsync to finish, but for less
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                 * than two seconds this is still ok. Postpone again. */
                return;
            }
            /* Otherwise fall trough, and go write since we can't wait
             * over two seconds. */
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            redisLog(REDIS_NOTICE,"Asynchronous AOF fsync is taking too long (disk is busy?). Writing the AOF buffer without waiting for fsync to complete, this may slow down Redis.");
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        }
    }
    /* If you are following this code path, then we are going to write so
     * set reset the postponed flush sentinel to zero. */
    server.aof_flush_postponed_start = 0;

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    /* We want to perform a single write. This should be guaranteed atomic
     * at least if the filesystem we are writing is a real physical one.
     * While this will save us against the server being killed I don't think
     * there is much to do about the whole server stopping for power problems
     * or alike */
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    nwritten = write(server.appendfd,server.aofbuf,sdslen(server.aofbuf));
    if (nwritten != (signed)sdslen(server.aofbuf)) {
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        /* Ooops, we are in troubles. The best thing to do for now is
         * aborting instead of giving the illusion that everything is
         * working as expected. */
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        if (nwritten == -1) {
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            redisLog(REDIS_WARNING,"Exiting on error writing to the append-only file: %s",strerror(errno));
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        } else {
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            redisLog(REDIS_WARNING,"Exiting on short write while writing to the append-only file: %s",strerror(errno));
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        }
        exit(1);
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    }
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    server.appendonly_current_size += nwritten;
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    /* Re-use AOF buffer when it is small enough. The maximum comes from the
     * arena size of 4k minus some overhead (but is otherwise arbitrary). */
    if ((sdslen(server.aofbuf)+sdsavail(server.aofbuf)) < 4000) {
        sdsclear(server.aofbuf);
    } else {
        sdsfree(server.aofbuf);
        server.aofbuf = sdsempty();
    }

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    /* Don't fsync if no-appendfsync-on-rewrite is set to yes and there are
     * children doing I/O in the background. */
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    if (server.no_appendfsync_on_rewrite &&
        (server.bgrewritechildpid != -1 || server.bgsavechildpid != -1))
            return;
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    /* Perform the fsync if needed. */
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    if (server.appendfsync == APPENDFSYNC_ALWAYS) {
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        /* aof_fsync is defined as fdatasync() for Linux in order to avoid
         * flushing metadata. */
        aof_fsync(server.appendfd); /* Let's try to get this data on the disk */
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        server.lastfsync = server.unixtime;
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    } else if ((server.appendfsync == APPENDFSYNC_EVERYSEC &&
                server.unixtime > server.lastfsync)) {
        if (!sync_in_progress) aof_background_fsync(server.appendfd);
        server.lastfsync = server.unixtime;
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    }
}

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sds catAppendOnlyGenericCommand(sds dst, int argc, robj **argv) {
    char buf[32];
    int len, j;
    robj *o;

    buf[0] = '*';
    len = 1+ll2string(buf+1,sizeof(buf)-1,argc);
    buf[len++] = '\r';
    buf[len++] = '\n';
    dst = sdscatlen(dst,buf,len);

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    for (j = 0; j < argc; j++) {
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        o = getDecodedObject(argv[j]);
        buf[0] = '$';
        len = 1+ll2string(buf+1,sizeof(buf)-1,sdslen(o->ptr));
        buf[len++] = '\r';
        buf[len++] = '\n';
        dst = sdscatlen(dst,buf,len);
        dst = sdscatlen(dst,o->ptr,sdslen(o->ptr));
        dst = sdscatlen(dst,"\r\n",2);
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        decrRefCount(o);
    }
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    return dst;
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}

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/* Create the sds representation of an PEXPIREAT command, using
 * 'seconds' as time to live and 'cmd' to understand what command
 * we are translating into a PEXPIREAT.
 *
 * This command is used in order to translate EXPIRE and PEXPIRE commands
 * into PEXPIREAT command so that we retain precision in the append only
 * file, and the time is always absolute and not relative. */
sds catAppendOnlyExpireAtCommand(sds buf, struct redisCommand *cmd, robj *key, robj *seconds) {
    long long when;
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    robj *argv[3];

    /* Make sure we can use strtol */
    seconds = getDecodedObject(seconds);
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    when = strtoll(seconds->ptr,NULL,10);
    /* Convert argument into milliseconds for EXPIRE, SETEX, EXPIREAT */
    if (cmd->proc == expireCommand || cmd->proc == setexCommand ||
        cmd->proc == expireatCommand)
    {
        when *= 1000;
    }
    /* Convert into absolute time for EXPIRE, PEXPIRE, SETEX, PSETEX */
    if (cmd->proc == expireCommand || cmd->proc == pexpireCommand ||
        cmd->proc == setexCommand || cmd->proc == psetexCommand)
    {
        when += mstime();
    }
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    decrRefCount(seconds);

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    argv[0] = createStringObject("PEXPIREAT",9);
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    argv[1] = key;
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    argv[2] = createStringObjectFromLongLong(when);
    buf = catAppendOnlyGenericCommand(buf, 3, argv);
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    decrRefCount(argv[0]);
    decrRefCount(argv[2]);
    return buf;
}

void feedAppendOnlyFile(struct redisCommand *cmd, int dictid, robj **argv, int argc) {
    sds buf = sdsempty();
    robj *tmpargv[3];

    /* The DB this command was targetting is not the same as the last command
     * we appendend. To issue a SELECT command is needed. */
    if (dictid != server.appendseldb) {
        char seldb[64];

        snprintf(seldb,sizeof(seldb),"%d",dictid);
        buf = sdscatprintf(buf,"*2\r\n$6\r\nSELECT\r\n$%lu\r\n%s\r\n",
            (unsigned long)strlen(seldb),seldb);
        server.appendseldb = dictid;
    }

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    if (cmd->proc == expireCommand || cmd->proc == pexpireCommand ||
        cmd->proc == expireatCommand) {
        /* Translate EXPIRE/PEXPIRE/EXPIREAT into PEXPIREAT */
        buf = catAppendOnlyExpireAtCommand(buf,cmd,argv[1],argv[2]);
    } else if (cmd->proc == setexCommand || cmd->proc == psetexCommand) {
        /* Translate SETEX/PSETEX to SET and PEXPIREAT */
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        tmpargv[0] = createStringObject("SET",3);
        tmpargv[1] = argv[1];
        tmpargv[2] = argv[3];
        buf = catAppendOnlyGenericCommand(buf,3,tmpargv);
        decrRefCount(tmpargv[0]);
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        buf = catAppendOnlyExpireAtCommand(buf,cmd,argv[1],argv[2]);
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    } else {
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        /* All the other commands don't need translation or need the
         * same translation already operated in the command vector
         * for the replication itself. */
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        buf = catAppendOnlyGenericCommand(buf,argc,argv);
    }

    /* Append to the AOF buffer. This will be flushed on disk just before
     * of re-entering the event loop, so before the client will get a
     * positive reply about the operation performed. */
    server.aofbuf = sdscatlen(server.aofbuf,buf,sdslen(buf));

    /* If a background append only file rewriting is in progress we want to
     * accumulate the differences between the child DB and the current one
     * in a buffer, so that when the child process will do its work we
     * can append the differences to the new append only file. */
    if (server.bgrewritechildpid != -1)
        server.bgrewritebuf = sdscatlen(server.bgrewritebuf,buf,sdslen(buf));

    sdsfree(buf);
}

/* In Redis commands are always executed in the context of a client, so in
 * order to load the append only file we need to create a fake client. */
struct redisClient *createFakeClient(void) {
    struct redisClient *c = zmalloc(sizeof(*c));

    selectDb(c,0);
    c->fd = -1;
    c->querybuf = sdsempty();
    c->argc = 0;
    c->argv = NULL;
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    c->bufpos = 0;
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    c->flags = 0;
    /* We set the fake client as a slave waiting for the synchronization
     * so that Redis will not try to send replies to this client. */
    c->replstate = REDIS_REPL_WAIT_BGSAVE_START;
    c->reply = listCreate();
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    c->watched_keys = listCreate();
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    listSetFreeMethod(c->reply,decrRefCount);
    listSetDupMethod(c->reply,dupClientReplyValue);
    initClientMultiState(c);
    return c;
}

void freeFakeClient(struct redisClient *c) {
    sdsfree(c->querybuf);
    listRelease(c->reply);
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    listRelease(c->watched_keys);
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    freeClientMultiState(c);
    zfree(c);
}

/* Replay the append log file. On error REDIS_OK is returned. On non fatal
 * error (the append only file is zero-length) REDIS_ERR is returned. On
 * fatal error an error message is logged and the program exists. */
int loadAppendOnlyFile(char *filename) {
    struct redisClient *fakeClient;
    FILE *fp = fopen(filename,"r");
    struct redis_stat sb;
    int appendonly = server.appendonly;
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    long loops = 0;
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    if (fp && redis_fstat(fileno(fp),&sb) != -1 && sb.st_size == 0) {
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        server.appendonly_current_size = 0;
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        fclose(fp);
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        return REDIS_ERR;
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    }
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    if (fp == NULL) {
        redisLog(REDIS_WARNING,"Fatal error: can't open the append log file for reading: %s",strerror(errno));
        exit(1);
    }

    /* Temporarily disable AOF, to prevent EXEC from feeding a MULTI
     * to the same file we're about to read. */
    server.appendonly = 0;

    fakeClient = createFakeClient();
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    startLoading(fp);

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    while(1) {
        int argc, j;
        unsigned long len;
        robj **argv;
        char buf[128];
        sds argsds;
        struct redisCommand *cmd;

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        /* Serve the clients from time to time */
        if (!(loops++ % 1000)) {
            loadingProgress(ftello(fp));
            aeProcessEvents(server.el, AE_FILE_EVENTS|AE_DONT_WAIT);
        }

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        if (fgets(buf,sizeof(buf),fp) == NULL) {
            if (feof(fp))
                break;
            else
                goto readerr;
        }
        if (buf[0] != '*') goto fmterr;
        argc = atoi(buf+1);
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        if (argc < 1) goto fmterr;

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        argv = zmalloc(sizeof(robj*)*argc);
        for (j = 0; j < argc; j++) {
            if (fgets(buf,sizeof(buf),fp) == NULL) goto readerr;
            if (buf[0] != '$') goto fmterr;
            len = strtol(buf+1,NULL,10);
            argsds = sdsnewlen(NULL,len);
            if (len && fread(argsds,len,1,fp) == 0) goto fmterr;
            argv[j] = createObject(REDIS_STRING,argsds);
            if (fread(buf,2,1,fp) == 0) goto fmterr; /* discard CRLF */
        }

        /* Command lookup */
        cmd = lookupCommand(argv[0]->ptr);
        if (!cmd) {
            redisLog(REDIS_WARNING,"Unknown command '%s' reading the append only file", argv[0]->ptr);
            exit(1);
        }
        /* Run the command in the context of a fake client */
        fakeClient->argc = argc;
        fakeClient->argv = argv;
        cmd->proc(fakeClient);
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        /* The fake client should not have a reply */
        redisAssert(fakeClient->bufpos == 0 && listLength(fakeClient->reply) == 0);
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        /* The fake client should never get blocked */
        redisAssert((fakeClient->flags & REDIS_BLOCKED) == 0);
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        /* Clean up. Command code may have changed argv/argc so we use the
         * argv/argc of the client instead of the local variables. */
        for (j = 0; j < fakeClient->argc; j++)
            decrRefCount(fakeClient->argv[j]);
        zfree(fakeClient->argv);
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    }

    /* This point can only be reached when EOF is reached without errors.
     * If the client is in the middle of a MULTI/EXEC, log error and quit. */
    if (fakeClient->flags & REDIS_MULTI) goto readerr;

    fclose(fp);
    freeFakeClient(fakeClient);
    server.appendonly = appendonly;
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    stopLoading();
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    aofUpdateCurrentSize();
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    server.auto_aofrewrite_base_size = server.appendonly_current_size;
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    return REDIS_OK;

readerr:
    if (feof(fp)) {
        redisLog(REDIS_WARNING,"Unexpected end of file reading the append only file");
    } else {
        redisLog(REDIS_WARNING,"Unrecoverable error reading the append only file: %s", strerror(errno));
    }
    exit(1);
fmterr:
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    redisLog(REDIS_WARNING,"Bad file format reading the append only file: make a backup of your AOF file, then use ./redis-check-aof --fix <filename>");
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    exit(1);
}

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/* Delegate writing an object to writing a bulk string or bulk long long.
 * This is not placed in rio.c since that adds the redis.h dependency. */
int rioWriteBulkObject(rio *r, robj *obj) {
    /* Avoid using getDecodedObject to help copy-on-write (we are often
     * in a child process when this function is called). */
    if (obj->encoding == REDIS_ENCODING_INT) {
        return rioWriteBulkLongLong(r,(long)obj->ptr);
    } else if (obj->encoding == REDIS_ENCODING_RAW) {
        return rioWriteBulkString(r,obj->ptr,sdslen(obj->ptr));
    } else {
        redisPanic("Unknown string encoding");
    }
}

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/* Emit the commands needed to rebuild a list object.
 * The function returns 0 on error, 1 on success. */
int rewriteListObject(rio *r, robj *key, robj *o) {
    long long count = 0, items = listTypeLength(o);

    if (o->encoding == REDIS_ENCODING_ZIPLIST) {
        unsigned char *zl = o->ptr;
        unsigned char *p = ziplistIndex(zl,0);
        unsigned char *vstr;
        unsigned int vlen;
        long long vlong;

        while(ziplistGet(p,&vstr,&vlen,&vlong)) {
            if (count == 0) {
                int cmd_items = (items > REDIS_AOFREWRITE_ITEMS_PER_CMD) ?
                    REDIS_AOFREWRITE_ITEMS_PER_CMD : items;
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                if (rioWriteBulkCount(r,'*',2+cmd_items) == 0) return 0;
                if (rioWriteBulkString(r,"RPUSH",5) == 0) return 0;
                if (rioWriteBulkObject(r,key) == 0) return 0;
            }
            if (vstr) {
                if (rioWriteBulkString(r,(char*)vstr,vlen) == 0) return 0;
            } else {
                if (rioWriteBulkLongLong(r,vlong) == 0) return 0;
            }
            p = ziplistNext(zl,p);
            if (++count == REDIS_AOFREWRITE_ITEMS_PER_CMD) count = 0;
            items--;
        }
    } else if (o->encoding == REDIS_ENCODING_LINKEDLIST) {
        list *list = o->ptr;
        listNode *ln;
        listIter li;

        listRewind(list,&li);
        while((ln = listNext(&li))) {
            robj *eleobj = listNodeValue(ln);

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            if (count == 0) {
                int cmd_items = (items > REDIS_AOFREWRITE_ITEMS_PER_CMD) ?
                    REDIS_AOFREWRITE_ITEMS_PER_CMD : items;
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                if (rioWriteBulkCount(r,'*',2+cmd_items) == 0) return 0;
                if (rioWriteBulkString(r,"RPUSH",5) == 0) return 0;
                if (rioWriteBulkObject(r,key) == 0) return 0;
            }
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            if (rioWriteBulkObject(r,eleobj) == 0) return 0;
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            if (++count == REDIS_AOFREWRITE_ITEMS_PER_CMD) count = 0;
            items--;
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        }
    } else {
        redisPanic("Unknown list encoding");
    }
    return 1;
}

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/* Emit the commands needed to rebuild a set object.
 * The function returns 0 on error, 1 on success. */
int rewriteSetObject(rio *r, robj *key, robj *o) {
    long long count = 0, items = setTypeSize(o);

    if (o->encoding == REDIS_ENCODING_INTSET) {
        int ii = 0;
        int64_t llval;

        while(intsetGet(o->ptr,ii++,&llval)) {
            if (count == 0) {
                int cmd_items = (items > REDIS_AOFREWRITE_ITEMS_PER_CMD) ?
                    REDIS_AOFREWRITE_ITEMS_PER_CMD : items;

                if (rioWriteBulkCount(r,'*',2+cmd_items) == 0) return 0;
                if (rioWriteBulkString(r,"SADD",4) == 0) return 0;
                if (rioWriteBulkObject(r,key) == 0) return 0;
            }
            if (rioWriteBulkLongLong(r,llval) == 0) return 0;
            if (++count == REDIS_AOFREWRITE_ITEMS_PER_CMD) count = 0;
            items--;
        }
    } else if (o->encoding == REDIS_ENCODING_HT) {
        dictIterator *di = dictGetIterator(o->ptr);
        dictEntry *de;

        while((de = dictNext(di)) != NULL) {
            robj *eleobj = dictGetKey(de);
            if (count == 0) {
                int cmd_items = (items > REDIS_AOFREWRITE_ITEMS_PER_CMD) ?
                    REDIS_AOFREWRITE_ITEMS_PER_CMD : items;

                if (rioWriteBulkCount(r,'*',2+cmd_items) == 0) return 0;
                if (rioWriteBulkString(r,"SADD",4) == 0) return 0;
                if (rioWriteBulkObject(r,key) == 0) return 0;
            }
            if (rioWriteBulkObject(r,eleobj) == 0) return 0;
            if (++count == REDIS_AOFREWRITE_ITEMS_PER_CMD) count = 0;
            items--;
        }
        dictReleaseIterator(di);
    } else {
        redisPanic("Unknown set encoding");
    }
    return 1;
}

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/* Emit the commands needed to rebuild a sorted set object.
 * The function returns 0 on error, 1 on success. */
int rewriteSortedSetObject(rio *r, robj *key, robj *o) {
    long long count = 0, items = zsetLength(o);

    if (o->encoding == REDIS_ENCODING_ZIPLIST) {
        unsigned char *zl = o->ptr;
        unsigned char *eptr, *sptr;
        unsigned char *vstr;
        unsigned int vlen;
        long long vll;
        double score;

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

        while (eptr != NULL) {
            redisAssert(ziplistGet(eptr,&vstr,&vlen,&vll));
            score = zzlGetScore(sptr);

            if (count == 0) {
                int cmd_items = (items > REDIS_AOFREWRITE_ITEMS_PER_CMD) ?
                    REDIS_AOFREWRITE_ITEMS_PER_CMD : items;

                if (rioWriteBulkCount(r,'*',2+cmd_items*2) == 0) return 0;
                if (rioWriteBulkString(r,"ZADD",4) == 0) return 0;
                if (rioWriteBulkObject(r,key) == 0) return 0;
            }
            if (rioWriteBulkDouble(r,score) == 0) return 0;
            if (vstr != NULL) {
                if (rioWriteBulkString(r,(char*)vstr,vlen) == 0) return 0;
            } else {
                if (rioWriteBulkLongLong(r,vll) == 0) return 0;
            }
            zzlNext(zl,&eptr,&sptr);
            if (++count == REDIS_AOFREWRITE_ITEMS_PER_CMD) count = 0;
            items--;
        }
    } else if (o->encoding == REDIS_ENCODING_SKIPLIST) {
        zset *zs = o->ptr;
        dictIterator *di = dictGetIterator(zs->dict);
        dictEntry *de;

        while((de = dictNext(di)) != NULL) {
            robj *eleobj = dictGetKey(de);
            double *score = dictGetVal(de);

            if (count == 0) {
                int cmd_items = (items > REDIS_AOFREWRITE_ITEMS_PER_CMD) ?
                    REDIS_AOFREWRITE_ITEMS_PER_CMD : items;

                if (rioWriteBulkCount(r,'*',2+cmd_items*2) == 0) return 0;
                if (rioWriteBulkString(r,"ZADD",4) == 0) return 0;
                if (rioWriteBulkObject(r,key) == 0) return 0;
            }
            if (rioWriteBulkDouble(r,*score) == 0) return 0;
            if (rioWriteBulkObject(r,eleobj) == 0) return 0;
            if (++count == REDIS_AOFREWRITE_ITEMS_PER_CMD) count = 0;
            items--;
        }
        dictReleaseIterator(di);
    } else {
        redisPanic("Unknown sorted zset encoding");
    }
    return 1;
}

598
/* Write a sequence of commands able to fully rebuild the dataset into
599 600 601 602 603 604
 * "filename". Used both by REWRITEAOF and BGREWRITEAOF.
 *
 * In order to minimize the number of commands needed in the rewritten
 * log Redis uses variadic commands when possible, such as RPUSH, SADD
 * and ZADD. However at max REDIS_AOFREWRITE_ITEMS_PER_CMD items per time
 * are inserted using a single command. */
605 606 607
int rewriteAppendOnlyFile(char *filename) {
    dictIterator *di = NULL;
    dictEntry *de;
P
Pieter Noordhuis 已提交
608
    rio aof;
609 610 611
    FILE *fp;
    char tmpfile[256];
    int j;
612
    long long now = mstime();
613 614 615 616 617 618 619 620 621

    /* Note that we have to use a different temp name here compared to the
     * one used by rewriteAppendOnlyFileBackground() function. */
    snprintf(tmpfile,256,"temp-rewriteaof-%d.aof", (int) getpid());
    fp = fopen(tmpfile,"w");
    if (!fp) {
        redisLog(REDIS_WARNING, "Failed rewriting the append only file: %s", strerror(errno));
        return REDIS_ERR;
    }
P
Pieter Noordhuis 已提交
622

623
    rioInitWithFile(&aof,fp);
624 625 626 627 628
    for (j = 0; j < server.dbnum; j++) {
        char selectcmd[] = "*2\r\n$6\r\nSELECT\r\n";
        redisDb *db = server.db+j;
        dict *d = db->dict;
        if (dictSize(d) == 0) continue;
629
        di = dictGetSafeIterator(d);
630 631 632 633 634 635
        if (!di) {
            fclose(fp);
            return REDIS_ERR;
        }

        /* SELECT the new DB */
P
Pieter Noordhuis 已提交
636 637
        if (rioWrite(&aof,selectcmd,sizeof(selectcmd)-1) == 0) goto werr;
        if (rioWriteBulkLongLong(&aof,j) == 0) goto werr;
638 639 640

        /* Iterate this DB writing every entry */
        while((de = dictNext(di)) != NULL) {
A
antirez 已提交
641
            sds keystr;
642
            robj key, *o;
643
            long long expiretime;
644

645 646
            keystr = dictGetKey(de);
            o = dictGetVal(de);
647
            initStaticStringObject(key,keystr);
648

649 650 651 652 653 654
            expiretime = getExpire(db,&key);

            /* Save the key and associated value */
            if (o->type == REDIS_STRING) {
                /* Emit a SET command */
                char cmd[]="*3\r\n$3\r\nSET\r\n";
P
Pieter Noordhuis 已提交
655
                if (rioWrite(&aof,cmd,sizeof(cmd)-1) == 0) goto werr;
656
                /* Key and value */
P
Pieter Noordhuis 已提交
657 658
                if (rioWriteBulkObject(&aof,&key) == 0) goto werr;
                if (rioWriteBulkObject(&aof,o) == 0) goto werr;
659
            } else if (o->type == REDIS_LIST) {
660
                if (rewriteListObject(&aof,&key,o) == 0) goto werr;
661
            } else if (o->type == REDIS_SET) {
662
                if (rewriteSetObject(&aof,&key,o) == 0) goto werr;
663
            } else if (o->type == REDIS_ZSET) {
664
                if (rewriteSortedSetObject(&aof,&key,o) == 0) goto werr;
665 666 667 668 669 670 671 672 673 674
            } else if (o->type == REDIS_HASH) {
                char cmd[]="*4\r\n$4\r\nHSET\r\n";

                /* Emit the HSETs needed to rebuild the hash */
                if (o->encoding == REDIS_ENCODING_ZIPMAP) {
                    unsigned char *p = zipmapRewind(o->ptr);
                    unsigned char *field, *val;
                    unsigned int flen, vlen;

                    while((p = zipmapNext(p,&field,&flen,&val,&vlen)) != NULL) {
P
Pieter Noordhuis 已提交
675 676 677
                        if (rioWrite(&aof,cmd,sizeof(cmd)-1) == 0) goto werr;
                        if (rioWriteBulkObject(&aof,&key) == 0) goto werr;
                        if (rioWriteBulkString(&aof,(char*)field,flen) == 0)
678
                            goto werr;
P
Pieter Noordhuis 已提交
679
                        if (rioWriteBulkString(&aof,(char*)val,vlen) == 0)
680
                            goto werr;
681 682 683 684 685 686
                    }
                } else {
                    dictIterator *di = dictGetIterator(o->ptr);
                    dictEntry *de;

                    while((de = dictNext(di)) != NULL) {
687 688
                        robj *field = dictGetKey(de);
                        robj *val = dictGetVal(de);
689

P
Pieter Noordhuis 已提交
690 691 692 693
                        if (rioWrite(&aof,cmd,sizeof(cmd)-1) == 0) goto werr;
                        if (rioWriteBulkObject(&aof,&key) == 0) goto werr;
                        if (rioWriteBulkObject(&aof,field) == 0) goto werr;
                        if (rioWriteBulkObject(&aof,val) == 0) goto werr;
694 695 696 697 698 699 700 701
                    }
                    dictReleaseIterator(di);
                }
            } else {
                redisPanic("Unknown object type");
            }
            /* Save the expire time */
            if (expiretime != -1) {
702
                char cmd[]="*3\r\n$9\r\nPEXPIREAT\r\n";
703 704
                /* If this key is already expired skip it */
                if (expiretime < now) continue;
P
Pieter Noordhuis 已提交
705 706
                if (rioWrite(&aof,cmd,sizeof(cmd)-1) == 0) goto werr;
                if (rioWriteBulkObject(&aof,&key) == 0) goto werr;
707
                if (rioWriteBulkLongLong(&aof,expiretime) == 0) goto werr;
708 709 710 711 712 713 714 715 716 717 718 719 720 721 722 723 724 725 726 727 728 729 730 731 732 733 734 735 736 737 738 739 740 741 742 743 744 745 746 747 748 749
            }
        }
        dictReleaseIterator(di);
    }

    /* Make sure data will not remain on the OS's output buffers */
    fflush(fp);
    aof_fsync(fileno(fp));
    fclose(fp);

    /* Use RENAME to make sure the DB file is changed atomically only
     * if the generate DB file is ok. */
    if (rename(tmpfile,filename) == -1) {
        redisLog(REDIS_WARNING,"Error moving temp append only file on the final destination: %s", strerror(errno));
        unlink(tmpfile);
        return REDIS_ERR;
    }
    redisLog(REDIS_NOTICE,"SYNC append only file rewrite performed");
    return REDIS_OK;

werr:
    fclose(fp);
    unlink(tmpfile);
    redisLog(REDIS_WARNING,"Write error writing append only file on disk: %s", strerror(errno));
    if (di) dictReleaseIterator(di);
    return REDIS_ERR;
}

/* This is how rewriting of the append only file in background works:
 *
 * 1) The user calls BGREWRITEAOF
 * 2) Redis calls this function, that forks():
 *    2a) the child rewrite the append only file in a temp file.
 *    2b) the parent accumulates differences in server.bgrewritebuf.
 * 3) When the child finished '2a' exists.
 * 4) The parent will trap the exit code, if it's OK, will append the
 *    data accumulated into server.bgrewritebuf into the temp file, and
 *    finally will rename(2) the temp file in the actual file name.
 *    The the new file is reopened as the new append only file. Profit!
 */
int rewriteAppendOnlyFileBackground(void) {
    pid_t childpid;
750
    long long start;
751 752

    if (server.bgrewritechildpid != -1) return REDIS_ERR;
753
    start = ustime();
754 755 756
    if ((childpid = fork()) == 0) {
        char tmpfile[256];

757
        /* Child */
758 759
        if (server.ipfd > 0) close(server.ipfd);
        if (server.sofd > 0) close(server.sofd);
760 761 762 763 764 765 766 767
        snprintf(tmpfile,256,"temp-rewriteaof-bg-%d.aof", (int) getpid());
        if (rewriteAppendOnlyFile(tmpfile) == REDIS_OK) {
            _exit(0);
        } else {
            _exit(1);
        }
    } else {
        /* Parent */
768
        server.stat_fork_time = ustime()-start;
769 770 771 772 773 774 775 776
        if (childpid == -1) {
            redisLog(REDIS_WARNING,
                "Can't rewrite append only file in background: fork: %s",
                strerror(errno));
            return REDIS_ERR;
        }
        redisLog(REDIS_NOTICE,
            "Background append only file rewriting started by pid %d",childpid);
777
        server.aofrewrite_scheduled = 0;
778 779 780 781 782 783 784 785 786 787 788 789 790 791
        server.bgrewritechildpid = childpid;
        updateDictResizePolicy();
        /* We set appendseldb to -1 in order to force the next call to the
         * feedAppendOnlyFile() to issue a SELECT command, so the differences
         * accumulated by the parent into server.bgrewritebuf will start
         * with a SELECT statement and it will be safe to merge. */
        server.appendseldb = -1;
        return REDIS_OK;
    }
    return REDIS_OK; /* unreached */
}

void bgrewriteaofCommand(redisClient *c) {
    if (server.bgrewritechildpid != -1) {
792
        addReplyError(c,"Background append only file rewriting already in progress");
793 794
    } else if (server.bgsavechildpid != -1) {
        server.aofrewrite_scheduled = 1;
795
        addReplyStatus(c,"Background append only file rewriting scheduled");
796
    } else if (rewriteAppendOnlyFileBackground() == REDIS_OK) {
797
        addReplyStatus(c,"Background append only file rewriting started");
798 799 800 801 802 803 804 805 806 807 808 809
    } else {
        addReply(c,shared.err);
    }
}

void aofRemoveTempFile(pid_t childpid) {
    char tmpfile[256];

    snprintf(tmpfile,256,"temp-rewriteaof-bg-%d.aof", (int) childpid);
    unlink(tmpfile);
}

810 811 812 813 814 815 816 817 818 819 820 821 822 823 824
/* Update the server.appendonly_current_size filed explicitly using stat(2)
 * to check the size of the file. This is useful after a rewrite or after
 * a restart, normally the size is updated just adding the write length
 * to the current lenght, that is much faster. */
void aofUpdateCurrentSize(void) {
    struct redis_stat sb;

    if (redis_fstat(server.appendfd,&sb) == -1) {
        redisLog(REDIS_WARNING,"Unable to check the AOF length: %s",
            strerror(errno));
    } else {
        server.appendonly_current_size = sb.st_size;
    }
}

825 826
/* A background append only file rewriting (BGREWRITEAOF) terminated its work.
 * Handle this. */
827
void backgroundRewriteDoneHandler(int exitcode, int bysignal) {
828
    if (!bysignal && exitcode == 0) {
829 830
        int newfd, oldfd;
        int nwritten;
831
        char tmpfile[256];
832
        long long now = ustime();
833 834

        redisLog(REDIS_NOTICE,
835 836
            "Background AOF rewrite terminated with success");

837 838 839 840
        /* Flush the differences accumulated by the parent to the
         * rewritten AOF. */
        snprintf(tmpfile,256,"temp-rewriteaof-bg-%d.aof",
            (int)server.bgrewritechildpid);
841 842 843 844
        newfd = open(tmpfile,O_WRONLY|O_APPEND);
        if (newfd == -1) {
            redisLog(REDIS_WARNING,
                "Unable to open the temporary AOF produced by the child: %s", strerror(errno));
845 846
            goto cleanup;
        }
847 848 849 850 851 852 853 854 855 856 857

        nwritten = write(newfd,server.bgrewritebuf,sdslen(server.bgrewritebuf));
        if (nwritten != (signed)sdslen(server.bgrewritebuf)) {
            if (nwritten == -1) {
                redisLog(REDIS_WARNING,
                    "Error trying to flush the parent diff to the rewritten AOF: %s", strerror(errno));
            } else {
                redisLog(REDIS_WARNING,
                    "Short write trying to flush the parent diff to the rewritten AOF: %s", strerror(errno));
            }
            close(newfd);
858 859
            goto cleanup;
        }
860 861 862 863 864 865

        redisLog(REDIS_NOTICE,
            "Parent diff successfully flushed to the rewritten AOF (%lu bytes)", nwritten);

        /* The only remaining thing to do is to rename the temporary file to
         * the configured file and switch the file descriptor used to do AOF
866 867 868 869
         * writes. We don't want close(2) or rename(2) calls to block the
         * server on old file deletion.
         *
         * There are two possible scenarios:
870 871 872 873 874 875 876 877 878 879 880 881 882 883
         *
         * 1) AOF is DISABLED and this was a one time rewrite. The temporary
         * file will be renamed to the configured file. When this file already
         * exists, it will be unlinked, which may block the server.
         *
         * 2) AOF is ENABLED and the rewritten AOF will immediately start
         * receiving writes. After the temporary file is renamed to the
         * configured file, the original AOF file descriptor will be closed.
         * Since this will be the last reference to that file, closing it
         * causes the underlying file to be unlinked, which may block the
         * server.
         *
         * To mitigate the blocking effect of the unlink operation (either
         * caused by rename(2) in scenario 1, or by close(2) in scenario 2), we
884
         * use a background thread to take care of this. First, we
885 886 887 888 889 890 891 892 893
         * make scenario 1 identical to scenario 2 by opening the target file
         * when it exists. The unlink operation after the rename(2) will then
         * be executed upon calling close(2) for its descriptor. Everything to
         * guarantee atomicity for this switch has already happened by then, so
         * we don't care what the outcome or duration of that close operation
         * is, as long as the file descriptor is released again. */
        if (server.appendfd == -1) {
            /* AOF disabled */

894 895 896 897
             /* Don't care if this fails: oldfd will be -1 and we handle that.
              * One notable case of -1 return is if the old file does
              * not exist. */
             oldfd = open(server.appendfilename,O_RDONLY|O_NONBLOCK);
898 899
        } else {
            /* AOF enabled */
900
            oldfd = -1; /* We'll set this to the current AOF filedes later. */
901 902 903 904
        }

        /* Rename the temporary file. This will not unlink the target file if
         * it exists, because we reference it with "oldfd". */
905
        if (rename(tmpfile,server.appendfilename) == -1) {
906 907 908
            redisLog(REDIS_WARNING,
                "Error trying to rename the temporary AOF: %s", strerror(errno));
            close(newfd);
909
            if (oldfd != -1) close(oldfd);
910 911
            goto cleanup;
        }
912 913

        if (server.appendfd == -1) {
914 915
            /* AOF disabled, we don't need to set the AOF file descriptor
             * to this new file, so we can close it. */
916 917
            close(newfd);
        } else {
918
            /* AOF enabled, replace the old fd with the new one. */
919 920
            oldfd = server.appendfd;
            server.appendfd = newfd;
921 922 923 924
            if (server.appendfsync == APPENDFSYNC_ALWAYS)
                aof_fsync(newfd);
            else if (server.appendfsync == APPENDFSYNC_EVERYSEC)
                aof_background_fsync(newfd);
925
            server.appendseldb = -1; /* Make sure SELECT is re-issued */
926
            aofUpdateCurrentSize();
927
            server.auto_aofrewrite_base_size = server.appendonly_current_size;
928 929 930 931 932

            /* Clear regular AOF buffer since its contents was just written to
             * the new AOF from the background rewrite buffer. */
            sdsfree(server.aofbuf);
            server.aofbuf = sdsempty();
933
        }
934 935 936 937

        redisLog(REDIS_NOTICE, "Background AOF rewrite successful");

        /* Asynchronously close the overwritten AOF. */
938
        if (oldfd != -1) bioCreateBackgroundJob(REDIS_BIO_CLOSE_FILE,(void*)(long)oldfd,NULL,NULL);
939 940 941

        redisLog(REDIS_VERBOSE,
            "Background AOF rewrite signal handler took %lldus", ustime()-now);
942
    } else if (!bysignal && exitcode != 0) {
943 944
        redisLog(REDIS_WARNING,
            "Background AOF rewrite terminated with error");
945 946
    } else {
        redisLog(REDIS_WARNING,
947
            "Background AOF rewrite terminated by signal %d", bysignal);
948
    }
949

950 951 952 953 954 955
cleanup:
    sdsfree(server.bgrewritebuf);
    server.bgrewritebuf = sdsempty();
    aofRemoveTempFile(server.bgrewritechildpid);
    server.bgrewritechildpid = -1;
}