Example #1
0
void redisAsyncHandleWrite(redisAsyncContext *ac) {
    redisContext *c = &(ac->c);
    int done = 0;

    // 连接创建失败???
    if (!(c->flags & REDIS_CONNECTED)) {
        /* Abort connect was not successful. */
        if (__redisAsyncHandleConnect(ac) != REDIS_OK)
            return;

        // 再尝试检测 flag
        /* Try again later when the context is still not connected. */
        if (!(c->flags & REDIS_CONNECTED))
            return;
    }

    if (redisBufferWrite(c,&done) == REDIS_ERR) {
        __redisAsyncDisconnect(ac);
    } else {
        /* Continue writing when not done, stop writing otherwise */
        // 当缓冲区中还有数据待发送时,会再次注册写事件
        if (!done)
            _EL_ADD_WRITE(ac);
        // 当缓冲区中没有数据待发送时,会再次注册写事件
        else
            _EL_DEL_WRITE(ac);

        /* Always schedule reads after writes */
        _EL_ADD_READ(ac);
    }
}
Example #2
0
void redisAsyncHandleWrite(redisAsyncContext *ac) {
    redisContext *c = &(ac->c);
    int done = 0;
    int status;

    if (!(c->flags & REDIS_CONNECTED)) {
        /* Abort connect was not successful. */
        if (__redisAsyncHandleConnect(ac) != REDIS_OK)
            return;
        /* Try again later when the context is still not connected. */
        if (!(c->flags & REDIS_CONNECTED))
            return;
    }

    pthread_mutex_lock(&ac->lock);

    status = redisBufferWrite(c,&done);
    
    pthread_mutex_unlock(&ac->lock);

    if (status == REDIS_ERR) {
        __redisAsyncDisconnect(ac);
    } else {
        /* Continue writing when not done, stop writing otherwise */
        if (!done)
            _EL_ADD_WRITE(ac);
        else
            _EL_DEL_WRITE(ac);

        /* Always schedule reads after writes */
        _EL_ADD_READ(ac);
    }
}
Example #3
0
/* Helper function for the redisAsyncCommand* family of functions. Writes a
 * formatted command to the output buffer and registers the provided callback
 * function with the context. */
static int __redisAsyncCommand(redisAsyncContext *ac, redisCallbackFn *fn, void *privdata, char *cmd, size_t len) {
    redisContext *c = &(ac->c);
    redisCallback cb;
    int pvariant, hasnext;
    char *cstr, *astr;
    size_t clen, alen;
    char *p;
    sds sname;

    /* Don't accept new commands when the connection is about to be closed. */
    if (c->flags & (REDIS_DISCONNECTING | REDIS_FREEING)) return REDIS_ERR;

    /* Setup callback */
    cb.fn = fn;
    cb.privdata = privdata;

    /* Find out which command will be appended. */
    p = nextArgument(cmd,&cstr,&clen);
    assert(p != NULL);
    hasnext = (p[0] == '$');
    pvariant = (tolower(cstr[0]) == 'p') ? 1 : 0;
    cstr += pvariant;
    clen -= pvariant;

    if (hasnext && strncasecmp(cstr,"subscribe\r\n",11) == 0) {
        c->flags |= REDIS_SUBSCRIBED;

        /* Add every channel/pattern to the list of subscription callbacks. */
        while ((p = nextArgument(p,&astr,&alen)) != NULL) {
            sname = sdsnewlen(astr,alen);
            if (pvariant)
                dictReplace(ac->sub.patterns,sname,&cb);
            else
                dictReplace(ac->sub.channels,sname,&cb);
        }
    } else if (strncasecmp(cstr,"unsubscribe\r\n",13) == 0) {
        /* It is only useful to call (P)UNSUBSCRIBE when the context is
         * subscribed to one or more channels or patterns. */
        if (!(c->flags & REDIS_SUBSCRIBED)) return REDIS_ERR;

        /* (P)UNSUBSCRIBE does not have its own response: every channel or
         * pattern that is unsubscribed will receive a message. This means we
         * should not append a callback function for this command. */
    } else {
        if (c->flags & REDIS_SUBSCRIBED)
            /* This will likely result in an error reply, but it needs to be
             * received and passed to the callback. */
            __redisPushCallback(&ac->sub.invalid,&cb);
        else
            __redisPushCallback(&ac->replies,&cb);
    }

    __redisAppendCommand(c,cmd,len);

    /* Always schedule a write when the write buffer is non-empty */
    _EL_ADD_WRITE(ac);

    return REDIS_OK;
}
Example #4
0
int redisAsyncSetConnectCallback(redisAsyncContext *ac, redisConnectCallback *fn) {
    if (ac->onConnect == NULL) {
        ac->onConnect = fn;

        /* The common way to detect an established connection is to wait for
         * the first write event to be fired. This assumes the related event
         * library functions are already set. */
        _EL_ADD_WRITE(ac);
        return REDIS_OK;
    }
    return REDIS_ERR;
}
Example #5
0
int redisAsyncHandleWriteComplete(redisAsyncContext *ac, int written) {
    redisContext *c = &(ac->c);
    int done = 0;
    int rc;

    rc = redisBufferWriteDone(c, written, &done);
    if (rc == REDIS_ERR) {
        __redisAsyncDisconnect(ac);
    } else {
        /* Continue writing when not done, stop writing otherwise */
        if (!done)
            _EL_ADD_WRITE(ac);
        else
            _EL_DEL_WRITE(ac);

        /* Always schedule reads after writes */
        _EL_ADD_READ(ac);
    }
    return REDIS_OK;
}