Example #1
0
static
int kafka_partition_count(rd_kafka_t *r, const char *topic)
{
    rd_kafka_topic_t *rkt;
    rd_kafka_topic_conf_t *conf;
    int i;//C89 compliant
    //connect as consumer if required
    if (r == NULL)
    {
        if (log_level)
        {
            openlog("phpkafka", 0, LOG_USER);
            syslog(LOG_ERR, "phpkafka - no connection to get partition count for topic: %s", topic);
        }
        return -1;
    }
    /* Topic configuration */
    conf = rd_kafka_topic_conf_new();

    /* Create topic */
    rkt = rd_kafka_topic_new(r, topic, conf);
    //metadata API required rd_kafka_metadata_t** to be passed
    const struct rd_kafka_metadata *meta = NULL;
    if (RD_KAFKA_RESP_ERR_NO_ERROR == rd_kafka_metadata(r, 0, rkt, &meta, 200))
        i = (int) meta->topics->partition_cnt;
    else
        i = 0;
    if (meta) {
        rd_kafka_metadata_destroy(meta);
    }
    rd_kafka_topic_destroy(rkt);
    return i;
}
Example #2
0
int main_0035_api_version (int argc, char **argv) {
	rd_kafka_t *rk;
	rd_kafka_conf_t *conf;
	const struct rd_kafka_metadata *metadata;
	rd_kafka_resp_err_t err;
	test_timing_t t_meta;

	test_conf_init(&conf, NULL, 30);
	test_conf_set(conf, "socket.timeout.ms", "12000");
	rk = test_create_handle(RD_KAFKA_PRODUCER, conf);

	TEST_SAY("Querying for metadata\n");
	TIMING_START(&t_meta, "metadata()");
	err = rd_kafka_metadata(rk, 0, NULL, &metadata, 10*1000);
	TIMING_STOP(&t_meta);
	if (err)
		TEST_FAIL("metadata() failed: %s",
			  rd_kafka_err2str(err));

	if (TIMING_DURATION(&t_meta) / 1000 > 11*1000)
		TEST_FAIL("metadata() took too long: %.3fms",
			  (float)TIMING_DURATION(&t_meta) / 1000.0f);

	rd_kafka_metadata_destroy(metadata);

	TEST_SAY("Metadata succeeded\n");

	rd_kafka_destroy(rk);

	return 0;
}
Example #3
0
//get topics + partition count
void kafka_get_topics(rd_kafka_t *r, zval *return_value)
{
    int i;
    const struct rd_kafka_metadata *meta = NULL;
    if (r == NULL)
    {
        if (log_level)
        {
            openlog("phpkafka", 0, LOG_USER);
            syslog(LOG_ERR, "phpkafka - no connection to get topics");
        }
        return;
    }
    if (RD_KAFKA_RESP_ERR_NO_ERROR == rd_kafka_metadata(r, 1, NULL, &meta, 200)) {
        for (i=0;i<meta->topic_cnt;++i) {
            add_assoc_long(
               return_value,
               meta->topics[i].topic,
               (long) meta->topics[i].partition_cnt
            );
        }
    }
    if (meta) {
        rd_kafka_metadata_destroy(meta);
    }
}
Example #4
0
static VALUE producer_connect(VALUE self, VALUE timeout) {
	HermannInstanceConfig *producerConfig;
	rd_kafka_resp_err_t err;
	VALUE result = Qfalse;
	int timeout_ms = rb_num2int(timeout);
	struct rd_kafka_metadata *data = NULL;

	Data_Get_Struct(self, HermannInstanceConfig, producerConfig);

	if (!producerConfig->isInitialized) {
		producer_init_kafka(self, producerConfig);
	}

	err = rd_kafka_metadata(producerConfig->rk,
									0,
								   producerConfig->rkt,
								   &data,
								   timeout_ms);
	TRACER("err: %s (%i)\n", rd_kafka_err2str(err), err);

	if (RD_KAFKA_RESP_ERR_NO_ERROR == err) {
		TRACER("brokers: %i, topics: %i\n",
				data->broker_cnt,
				data->topic_cnt);
		producerConfig->isConnected = 1;
		result = Qtrue;
	}
	else {
		producerConfig->isErrored = err;
	}

	rd_kafka_metadata_destroy(data);

	return result;
}
Example #5
0
static void *producer_metadata_request_nogvl(void *ptr)
{
	hermann_metadata_ctx_t *ctx = (hermann_metadata_ctx_t*)ptr;

	return (void *) rd_kafka_metadata(ctx->rk,
			ctx->topic ? 0 : 1,
			ctx->topic,
			(const struct rd_kafka_metadata **) &(ctx->data),
			ctx->timeout_ms);
}
Example #6
0
void kafka_avro_schema_purge(char *avro_schema_str)
{
  struct p_kafka_host kafka_avro_schema_host;
  int part, part_cnt, tpc;

  if (!avro_schema_str || !config.kafka_avro_schema_topic) return;

  /* setting some defaults */
  if (!config.sql_host) config.sql_host = default_kafka_broker_host;
  if (!config.kafka_broker_port) config.kafka_broker_port = default_kafka_broker_port;

  p_kafka_init_host(&kafka_avro_schema_host, config.kafka_config_file);
  p_kafka_connect_to_produce(&kafka_avro_schema_host);
  p_kafka_set_broker(&kafka_avro_schema_host, config.sql_host, config.kafka_broker_port);
  p_kafka_set_topic(&kafka_avro_schema_host, config.kafka_avro_schema_topic);
  p_kafka_set_partition(&kafka_avro_schema_host, config.kafka_partition);
  p_kafka_set_key(&kafka_avro_schema_host, config.kafka_partition_key, config.kafka_partition_keylen);
  p_kafka_set_content_type(&kafka_avro_schema_host, PM_KAFKA_CNT_TYPE_STR);

  if (config.kafka_partition_dynamic) {
    rd_kafka_resp_err_t err;
    const struct rd_kafka_metadata *metadata;

    err = rd_kafka_metadata(kafka_avro_schema_host.rk, 0, kafka_avro_schema_host.topic, &metadata, 100);
    if (err != RD_KAFKA_RESP_ERR_NO_ERROR) {
      Log(LOG_ERR, "ERROR ( %s/%s ): Unable to get Kafka metadata for topic %s: %s\n",
              config.name, config.type, kafka_avro_schema_host.topic, rd_kafka_err2str(err));
      exit_plugin(1);
    }

    part_cnt = -1;
    for (tpc = 0 ; tpc < metadata->topic_cnt ; tpc++) {
      const struct rd_kafka_metadata_topic *t = &metadata->topics[tpc];
      if (!strcmp(t->topic, config.kafka_avro_schema_topic)) {
          part_cnt = t->partition_cnt;
          break;
      }
    }

    for(part = 0; part < part_cnt; part++) {
      p_kafka_produce_data_to_part(&kafka_avro_schema_host, avro_schema_str, strlen(avro_schema_str), part);
    }
  }
  else {
    p_kafka_produce_data(&kafka_avro_schema_host, avro_schema_str, strlen(avro_schema_str));
  }

  p_kafka_close(&kafka_avro_schema_host, FALSE);
}
Example #7
0
RdKafka::ErrorCode RdKafka::HandleImpl::metadata (bool all_topics,
        const Topic *only_rkt,
        Metadata **metadatap,
        int timeout_ms) {

    const rd_kafka_metadata_t *cmetadatap=NULL;

    rd_kafka_topic_t *topic = only_rkt ?
                              static_cast<const TopicImpl *>(only_rkt)->rkt_ : NULL;

    const rd_kafka_resp_err_t rc = rd_kafka_metadata(rk_, all_topics, topic,
                                   &cmetadatap,timeout_ms);

    *metadatap = (rc == RD_KAFKA_RESP_ERR_NO_ERROR) ?
                 new RdKafka::MetadataImpl(cmetadatap) : NULL;

    return static_cast<RdKafka::ErrorCode>(rc);
}
Example #8
0
void kafka_consume_all(rd_kafka_t *rk, zval *return_value, const char *topic, const char *offset, int item_count)
{
    char errstr[512];
    rd_kafka_topic_t *rkt;
    rd_kafka_topic_conf_t *conf;
    const struct rd_kafka_metadata *meta = NULL;
    rd_kafka_queue_t *rkqu = NULL;
    int current, p, i = 0;
    int32_t partition = 0;
    int64_t start;
    struct consume_cb_params cb_params = {item_count, return_value, NULL, 0, 0, 0};
    //check for NULL pointers, all arguments are required!
    if (rk == NULL || return_value == NULL || topic == NULL || offset == NULL || strlen(offset) == 0)
        return;

    if (!strcmp(offset, "end"))
        start = RD_KAFKA_OFFSET_END;
    else if (!strcmp(offset, "beginning"))
        start = RD_KAFKA_OFFSET_BEGINNING;
    else if (!strcmp(offset, "stored"))
        start = RD_KAFKA_OFFSET_STORED;
    else
        start = strtoll(offset, NULL, 10);

    /* Topic configuration */
    conf = rd_kafka_topic_conf_new();

    /* Disable autocommit, queue_consume sets offsets automatically */
    if (rd_kafka_topic_conf_set(conf, "auto.commit.enable", "false", errstr, sizeof(errstr)) != RD_KAFKA_CONF_OK)
    {
        if (log_level)
        {
            openlog("phpkafka", 0, LOG_USER);
            syslog(
                LOG_WARNING,
                "failed to turn autocommit off consuming %d messages (start offset %"PRId64") from topic %s: %s",
                item_count,
                start,
                topic,
                errstr
            );
        }
        cb_params.auto_commit = 1;
    }
    /* Create topic */
    rkt = rd_kafka_topic_new(rk, topic, conf);
    if (!rkt)
    {
        if (log_level)
        {
            openlog("phpkafka", 0, LOG_USER);
            syslog(LOG_INFO, "phpkafka - Failed to read %s from %"PRId64" (%s)", topic, start, offset);
        }
        return;
    }
    rkqu = rd_kafka_queue_new(rk);
    if (RD_KAFKA_RESP_ERR_NO_ERROR == rd_kafka_metadata(rk, 0, rkt, &meta, 5))
    {
        p = meta->topics->partition_cnt;
        cb_params.partition_ends = calloc(sizeof *cb_params.partition_ends, p);
        if (cb_params.partition_ends == NULL)
        {
            if (log_level)
            {
                openlog("phpkafka", 0, LOG_USER);
                syslog(LOG_INFO, "phpkafka - Failed to read %s from %"PRId64" (%s)", topic, start, offset);
            }
            rd_kafka_metadata_destroy(meta);
            meta = NULL;
            rd_kafka_queue_destroy(rkqu);
            rd_kafka_topic_destroy(rkt);
            return;
        }
        cb_params.eop = p;
        for (i=0;i<p;++i)
        {
            partition = meta->topics[0].partitions[i].id;
            if (rd_kafka_consume_start_queue(rkt, partition, start, rkqu))
            {
                if (log_level)
                {
                    openlog("phpkafka", 0, LOG_USER);
                    syslog(LOG_ERR,
                        "Failed to start consuming topic %s [%"PRId32"]: %s",
                        topic, partition, offset
                    );
                }
                continue;
            }
        }
        while(cb_params.read_count && cb_params.eop)
            rd_kafka_consume_callback_queue(rkqu, 200, queue_consume, &cb_params);
        free(cb_params.partition_ends);
        cb_params.partition_ends = NULL;
        for (i=0;i<p;++i)
        {
            partition = meta->topics[0].partitions[i].id;
            rd_kafka_consume_stop(rkt, partition);
        }
        rd_kafka_metadata_destroy(meta);
        meta = NULL;
        rd_kafka_queue_destroy(rkqu);
        while(rd_kafka_outq_len(rk) > 0)
            rd_kafka_poll(rk, 50);
        rd_kafka_topic_destroy(rkt);
    }
    if (meta)
        rd_kafka_metadata_destroy(meta);
}
Example #9
0
/**
 * @brief Get all partitions for topic and their beginning offsets, useful
 * if we're consuming messages without knowing the actual partition beforehand
 * @param int **partitions should be pointer to NULL, will be allocated here
 * @param const char * topic topic name
 * @return int (0 == meta error, -2: no connection, -1: allocation error, all others indicate success (nr of elems in array))
 */
int kafka_partition_offsets(rd_kafka_t *r, long **partitions, const char *topic)
{
    rd_kafka_topic_t *rkt = NULL;
    rd_kafka_topic_conf_t *conf = NULL;
    rd_kafka_queue_t *rkqu = NULL;
    struct consume_cb_params cb_params = {0, NULL, NULL, 0, 0, 0};
    int i = 0;
    //make life easier, 1 level of indirection...
    long *values = *partitions;
    //connect as consumer if required
    if (r == NULL)
    {
        if (log_level)
        {
            openlog("phpkafka", 0, LOG_USER);
            syslog(LOG_ERR, "phpkafka - no connection to get offsets of topic: %s", topic);
        }
        return -2;
    }
    /* Topic configuration */
    conf = rd_kafka_topic_conf_new();

    /* Create topic */
    rkt = rd_kafka_topic_new(r, topic, conf);
    rkqu = rd_kafka_queue_new(rk);
    const struct rd_kafka_metadata *meta = NULL;
    if (RD_KAFKA_RESP_ERR_NO_ERROR == rd_kafka_metadata(r, 0, rkt, &meta, 5))
    {
        values = realloc(values, meta->topics->partition_cnt * sizeof *values);
        if (values == NULL)
        {
            *partitions = values;//possible corrupted pointer now
            //free metadata, return error
            rd_kafka_metadata_destroy(meta);
            return -1;
        }
        //we need eop to reach 0, if there are 4 partitions, start at 3 (0, 1, 2, 3)
        cb_params.eop = meta->topics->partition_cnt -1;
        cb_params.partition_offset = values;
        for (i=0;i<meta->topics->partition_cnt;++i)
        {
            //initialize: set to -2 for callback
            values[i] = -2;
            if (rd_kafka_consume_start_queue(rkt, meta->topics->partitions[i].id, RD_KAFKA_OFFSET_BEGINNING, rkqu))
            {
                if (log_level)
                {
                    openlog("phpkafka", 0, LOG_USER);
                    syslog(LOG_ERR,
                        "Failed to start consuming topic %s [%"PRId32"]",
                        topic, meta->topics->partitions[i].id
                    );
                }
                continue;
            }
        }
        //eiter eop reached 0, or the read errors >= nr of partitions
        //either way, we've consumed a message from each partition, and therefore, we're done
        while(cb_params.eop && cb_params.error_count < meta->topics->partition_cnt)
            rd_kafka_consume_callback_queue(rkqu, 100, offset_queue_consume, &cb_params);
        //stop consuming for all partitions
        for (i=0;i<meta->topics->partition_cnt;++i)
            rd_kafka_consume_stop(rkt, meta->topics[0].partitions[i].id);
        rd_kafka_queue_destroy(rkqu);
        //do we need this poll here?
        while(rd_kafka_outq_len(r) > 0)
            rd_kafka_poll(r, 5);

        //let's be sure to pass along the correct values here...
        *partitions = values;
        i = meta->topics->partition_cnt;
    }
    if (meta)
        rd_kafka_metadata_destroy(meta);
    rd_kafka_topic_destroy(rkt);
    return i;
}
Example #10
0
int main (int argc, char **argv) {

        if (argc < 0 /* always false */) {
                rd_kafka_version();
                rd_kafka_version_str();
                rd_kafka_err2str(RD_KAFKA_RESP_ERR_NO_ERROR);
                rd_kafka_errno2err(EINVAL);
                rd_kafka_conf_new();
                rd_kafka_conf_destroy(NULL);
                rd_kafka_conf_dup(NULL);
                rd_kafka_conf_set(NULL, NULL, NULL, NULL, 0);
                rd_kafka_conf_set_dr_cb(NULL, NULL);
                rd_kafka_conf_set_dr_msg_cb(NULL, NULL);
                rd_kafka_conf_set_error_cb(NULL, NULL);
                rd_kafka_conf_set_stats_cb(NULL, NULL);
                rd_kafka_conf_set_log_cb(NULL, NULL);
                rd_kafka_conf_set_socket_cb(NULL, NULL);
                rd_kafka_conf_set_open_cb(NULL, NULL);
                rd_kafka_conf_set_opaque(NULL, NULL);
                rd_kafka_opaque(NULL);
                rd_kafka_conf_dump(NULL, NULL);
                rd_kafka_topic_conf_dump(NULL, NULL);
                rd_kafka_conf_dump_free(NULL, 0);
                rd_kafka_conf_properties_show(NULL);
                rd_kafka_topic_conf_new();
                rd_kafka_topic_conf_dup(NULL);
                rd_kafka_topic_conf_destroy(NULL);
                rd_kafka_topic_conf_set(NULL, NULL, NULL, NULL, 0);
                rd_kafka_topic_conf_set_opaque(NULL, NULL);
                rd_kafka_topic_conf_set_partitioner_cb(NULL, NULL);
                rd_kafka_topic_partition_available(NULL, 0);
                rd_kafka_msg_partitioner_random(NULL, NULL, 0, 0, NULL, NULL);
                rd_kafka_new(0, NULL, NULL, 0);
                rd_kafka_destroy(NULL);
                rd_kafka_name(NULL);
                rd_kafka_topic_new(NULL, NULL, NULL);
                rd_kafka_topic_destroy(NULL);
                rd_kafka_topic_name(NULL);
                rd_kafka_message_destroy(NULL);
                rd_kafka_message_errstr(NULL);
                rd_kafka_consume_start(NULL, 0, 0);
                rd_kafka_consume_stop(NULL, 0);
                rd_kafka_consume(NULL, 0, 0);
                rd_kafka_consume_batch(NULL, 0, 0, NULL, 0);
                rd_kafka_consume_callback(NULL, 0, 0, NULL, NULL);
                rd_kafka_offset_store(NULL, 0, 0);
                rd_kafka_produce(NULL, 0, 0, NULL, 0, NULL, 0, NULL);
                rd_kafka_poll(NULL, 0);
                rd_kafka_brokers_add(NULL, NULL);
                rd_kafka_set_logger(NULL, NULL);
                rd_kafka_set_log_level(NULL, 0);
                rd_kafka_log_print(NULL, 0, NULL, NULL);
                rd_kafka_log_syslog(NULL, 0, NULL, NULL);
                rd_kafka_outq_len(NULL);
                rd_kafka_dump(NULL, NULL);
                rd_kafka_thread_cnt();
                rd_kafka_wait_destroyed(0);
                rd_kafka_metadata(NULL, 0, NULL, NULL, 0);
                rd_kafka_metadata_destroy(NULL);
        }


	return 0;
}
Example #11
0
    ECL_KAFKA_API __int32 ECL_KAFKA_CALL getTopicPartitionCount(ICodeContext* ctx, const char* brokers, const char* topic)
    {
        // We have to use librdkafka's C API for this right now, as the C++ API
        // does not expose a topic's metadata.  In addition, there is no easy
        // link between the exposed C++ objects and the structs used by the
        // C API, so we are basically creating a brand-new connection from
        // scratch.

        __int32 pCount = 0;
        char errstr[512];
        rd_kafka_conf_t* conf = rd_kafka_conf_new();
        rd_kafka_t* rk = rd_kafka_new(RD_KAFKA_CONSUMER, conf, errstr, sizeof(errstr));

        if (rk)
        {
            if (rd_kafka_brokers_add(rk, brokers) != 0)
            {
                rd_kafka_topic_conf_t* topic_conf = rd_kafka_topic_conf_new();
                rd_kafka_topic_t* rkt = rd_kafka_topic_new(rk, topic, topic_conf);

                if (rkt)
                {
                    const struct rd_kafka_metadata* metadata = NULL;
                    rd_kafka_resp_err_t err = rd_kafka_metadata(rk, 0, rkt, &metadata, 5000);

                    if (err == RD_KAFKA_RESP_ERR_NO_ERROR)
                    {
                        pCount = metadata->topics[0].partition_cnt;

                        rd_kafka_metadata_destroy(metadata);
                    }
                    else
                    {
                        if (ctx->queryContextLogger().queryTraceLevel() > 4)
                        {
                            DBGLOG("Kafka: Error retrieving metadata from topic: %s @ %s: '%s'", topic, brokers, rd_kafka_err2str(err));
                        }
                    }

                    rd_kafka_topic_destroy(rkt);
                }
                else
                {
                    if (ctx->queryContextLogger().queryTraceLevel() > 4)
                    {
                        DBGLOG("Kafka: Could not create topic object: %s @ %s", topic, brokers);
                    }
                }
            }
            else
            {
                if (ctx->queryContextLogger().queryTraceLevel() > 4)
                {
                    DBGLOG("Kafka: Could not add brokers: %s @ %s", topic, brokers);
                }
            }

            rd_kafka_destroy(rk);
        }

        if (pCount == 0)
        {
            DBGLOG("Kafka: Unable to retrieve partition count from topic: %s @ %s", topic, brokers);
        }

        return pCount;
    }
Example #12
0
int main_0002_unkpart (int argc, char **argv) {
	int partition = 99; /* non-existent */
	int r;
	rd_kafka_t *rk;
	rd_kafka_topic_t *rkt;
	rd_kafka_conf_t *conf;
	rd_kafka_topic_conf_t *topic_conf;
	char msg[128];
	int msgcnt = 10;
	int i;
	int fails = 0;
        const struct rd_kafka_metadata *metadata;

	test_conf_init(&conf, &topic_conf, 10);

	/* Set delivery report callback */
	rd_kafka_conf_set_dr_cb(conf, dr_cb);

	/* Create kafka instance */
	rk = test_create_handle(RD_KAFKA_PRODUCER, conf);

	rkt = rd_kafka_topic_new(rk, test_mk_topic_name("0002", 0),
                                 topic_conf);
	if (!rkt)
		TEST_FAIL("Failed to create topic: %s\n",
			  rd_strerror(errno));

        /* Request metadata so that we know the cluster is up before producing
         * messages, otherwise erroneous partitions will not fail immediately.*/
        if ((r = rd_kafka_metadata(rk, 0, rkt, &metadata,
				   tmout_multip(15000))) !=
            RD_KAFKA_RESP_ERR_NO_ERROR)
                TEST_FAIL("Failed to acquire metadata: %s\n",
                          rd_kafka_err2str(r));

        rd_kafka_metadata_destroy(metadata);

	/* Produce a message */
	for (i = 0 ; i < msgcnt ; i++) {
		int *msgidp = malloc(sizeof(*msgidp));
		*msgidp = i;
		rd_snprintf(msg, sizeof(msg), "%s test message #%i", argv[0], i);
		r = rd_kafka_produce(rkt, partition, RD_KAFKA_MSG_F_COPY,
				     msg, strlen(msg), NULL, 0, msgidp);
		if (r == -1) {
			if (errno == ESRCH)
				TEST_SAY("Failed to produce message #%i: "
					 "unknown partition: good!\n", i);
			else
				TEST_FAIL("Failed to produce message #%i: %s\n",
					  i, rd_kafka_err2str(
						  rd_kafka_errno2err(errno)));
                        free(msgidp);
		} else {
			if (i > 5) {
				fails++;
				TEST_SAY("Message #%i produced: "
					 "should've failed\n", i);
			}
			msgs_wait |= (1 << i);
		}

		/* After half the messages: sleep to allow the metadata
		 * to be fetched from broker and update the actual partition
		 * count: this will make subsequent produce() calls fail
		 * immediately. */
		if (i == 5)
			rd_sleep(2);
	}

	/* Wait for messages to time out */
	rd_kafka_flush(rk, -1);

	if (msgs_wait != 0)
		TEST_FAIL("Still waiting for messages: 0x%x\n", msgs_wait);


	if (fails > 0)
		TEST_FAIL("See previous error(s)\n");

	/* Destroy topic */
	rd_kafka_topic_destroy(rkt);
		
	/* Destroy rdkafka instance */
	TEST_SAY("Destroying kafka instance %s\n", rd_kafka_name(rk));
	rd_kafka_destroy(rk);

	return 0;
}
Example #13
0
int main_0006_symbols (int argc, char **argv) {

        if (argc < 0 /* always false */) {
                rd_kafka_version();
                rd_kafka_version_str();
		rd_kafka_get_debug_contexts();
		rd_kafka_get_err_descs(NULL, NULL);
                rd_kafka_err2str(RD_KAFKA_RESP_ERR_NO_ERROR);
		rd_kafka_err2name(RD_KAFKA_RESP_ERR_NO_ERROR);
                rd_kafka_errno2err(EINVAL);
                rd_kafka_errno();
		rd_kafka_last_error();
                rd_kafka_conf_new();
                rd_kafka_conf_destroy(NULL);
                rd_kafka_conf_dup(NULL);
                rd_kafka_conf_set(NULL, NULL, NULL, NULL, 0);
                rd_kafka_conf_set_dr_cb(NULL, NULL);
                rd_kafka_conf_set_dr_msg_cb(NULL, NULL);
                rd_kafka_conf_set_error_cb(NULL, NULL);
                rd_kafka_conf_set_stats_cb(NULL, NULL);
                rd_kafka_conf_set_log_cb(NULL, NULL);
                rd_kafka_conf_set_socket_cb(NULL, NULL);
		rd_kafka_conf_set_rebalance_cb(NULL, NULL);
		rd_kafka_conf_set_offset_commit_cb(NULL, NULL);
		rd_kafka_conf_set_throttle_cb(NULL, NULL);
		rd_kafka_conf_set_default_topic_conf(NULL, NULL);
		rd_kafka_conf_get(NULL, NULL, NULL, NULL);
#ifndef _MSC_VER
		rd_kafka_conf_set_open_cb(NULL, NULL);
#endif
		rd_kafka_conf_set_opaque(NULL, NULL);
                rd_kafka_opaque(NULL);
                rd_kafka_conf_dump(NULL, NULL);
                rd_kafka_topic_conf_dump(NULL, NULL);
                rd_kafka_conf_dump_free(NULL, 0);
                rd_kafka_conf_properties_show(NULL);
                rd_kafka_topic_conf_new();
                rd_kafka_topic_conf_dup(NULL);
                rd_kafka_topic_conf_destroy(NULL);
                rd_kafka_topic_conf_set(NULL, NULL, NULL, NULL, 0);
                rd_kafka_topic_conf_set_opaque(NULL, NULL);
		rd_kafka_topic_conf_get(NULL, NULL, NULL, NULL);
                rd_kafka_topic_conf_set_partitioner_cb(NULL, NULL);
                rd_kafka_topic_partition_available(NULL, 0);
		rd_kafka_topic_opaque(NULL);
                rd_kafka_msg_partitioner_random(NULL, NULL, 0, 0, NULL, NULL);
                rd_kafka_msg_partitioner_consistent(NULL, NULL, 0, 0, NULL, NULL);
                rd_kafka_msg_partitioner_consistent_random(NULL, NULL, 0, 0, NULL, NULL);
                rd_kafka_new(0, NULL, NULL, 0);
                rd_kafka_destroy(NULL);
                rd_kafka_name(NULL);
		rd_kafka_memberid(NULL);
                rd_kafka_topic_new(NULL, NULL, NULL);
                rd_kafka_topic_destroy(NULL);
                rd_kafka_topic_name(NULL);
                rd_kafka_message_destroy(NULL);
                rd_kafka_message_errstr(NULL);
		rd_kafka_message_timestamp(NULL, NULL);
                rd_kafka_consume_start(NULL, 0, 0);
                rd_kafka_consume_stop(NULL, 0);
                rd_kafka_consume(NULL, 0, 0);
                rd_kafka_consume_batch(NULL, 0, 0, NULL, 0);
                rd_kafka_consume_callback(NULL, 0, 0, NULL, NULL);
                rd_kafka_offset_store(NULL, 0, 0);
                rd_kafka_produce(NULL, 0, 0, NULL, 0, NULL, 0, NULL);
                rd_kafka_produce_batch(NULL, 0, 0, NULL, 0);
                rd_kafka_poll(NULL, 0);
                rd_kafka_brokers_add(NULL, NULL);
                /* DEPRECATED: rd_kafka_set_logger(NULL, NULL); */
                rd_kafka_set_log_level(NULL, 0);
                rd_kafka_log_print(NULL, 0, NULL, NULL);
#ifndef _MSC_VER
                rd_kafka_log_syslog(NULL, 0, NULL, NULL);
#endif
                rd_kafka_outq_len(NULL);
                rd_kafka_dump(NULL, NULL);
                rd_kafka_thread_cnt();
                rd_kafka_wait_destroyed(0);
                rd_kafka_metadata(NULL, 0, NULL, NULL, 0);
                rd_kafka_metadata_destroy(NULL);
                rd_kafka_queue_destroy(NULL);
                rd_kafka_consume_start_queue(NULL, 0, 0, NULL);
                rd_kafka_consume_queue(NULL, 0);
                rd_kafka_consume_batch_queue(NULL, 0, NULL, 0);
                rd_kafka_consume_callback_queue(NULL, 0, NULL, NULL);
                rd_kafka_seek(NULL, 0, 0, 0);
                rd_kafka_yield(NULL);
                rd_kafka_mem_free(NULL, NULL);
                rd_kafka_list_groups(NULL, NULL, NULL, 0);
                rd_kafka_group_list_destroy(NULL);

		/* KafkaConsumer API */
		rd_kafka_subscribe(NULL, NULL);
		rd_kafka_unsubscribe(NULL);
		rd_kafka_subscription(NULL, NULL);
		rd_kafka_consumer_poll(NULL, 0);
		rd_kafka_consumer_close(NULL);
		rd_kafka_assign(NULL, NULL);
		rd_kafka_assignment(NULL, NULL);
		rd_kafka_commit(NULL, NULL, 0);
		rd_kafka_commit_message(NULL, NULL, 0);
                rd_kafka_committed(NULL, NULL, 0);
		rd_kafka_position(NULL, NULL);

		/* TopicPartition */
		rd_kafka_topic_partition_list_new(0);
		rd_kafka_topic_partition_list_destroy(NULL);
		rd_kafka_topic_partition_list_add(NULL, NULL, 0);
		rd_kafka_topic_partition_list_add_range(NULL, NULL, 0, 0);
		rd_kafka_topic_partition_list_del(NULL, NULL, 0);
		rd_kafka_topic_partition_list_del_by_idx(NULL, 0);
		rd_kafka_topic_partition_list_copy(NULL);
		rd_kafka_topic_partition_list_set_offset(NULL, NULL, 0, 0);
		rd_kafka_topic_partition_list_find(NULL, NULL, 0);
		rd_kafka_query_watermark_offsets(NULL, NULL, 0, NULL, NULL, 0);
		rd_kafka_get_watermark_offsets(NULL, NULL, 0, NULL, NULL);
        }


	return 0;
}
int main (int argc, char **argv) {
	rd_kafka_topic_t *rkt;
	char *brokers = "localhost:9092";
	char mode = 'C';
	char *topic = NULL;
	int partition = RD_KAFKA_PARTITION_UA;
	int opt;
	rd_kafka_conf_t *conf;
	rd_kafka_topic_conf_t *topic_conf;
	char errstr[512];
	const char *debug = NULL;
	int64_t start_offset = 0;
        int report_offsets = 0;
	int do_conf_dump = 0;

	quiet = !isatty(STDIN_FILENO);

	/* Kafka configuration */
	conf = rd_kafka_conf_new();

	/* Topic configuration */
	topic_conf = rd_kafka_topic_conf_new();

	while ((opt = getopt(argc, argv, "PCLt:p:b:z:qd:o:eX:A")) != -1) {
		switch (opt) {
		case 'P':
		case 'C':
                case 'L':
			mode = opt;
			break;
		case 't':
			topic = optarg;
			break;
		case 'p':
			partition = atoi(optarg);
			break;
		case 'b':
			brokers = optarg;
			break;
		case 'z':
			if (rd_kafka_conf_set(conf, "compression.codec",
					      optarg,
					      errstr, sizeof(errstr)) !=
			    RD_KAFKA_CONF_OK) {
				fprintf(stderr, "%% %s\n", errstr);
				exit(1);
			}
			break;
		case 'o':
			if (!strcmp(optarg, "end"))
				start_offset = RD_KAFKA_OFFSET_END;
			else if (!strcmp(optarg, "beginning"))
				start_offset = RD_KAFKA_OFFSET_BEGINNING;
			else if (!strcmp(optarg, "stored"))
				start_offset = RD_KAFKA_OFFSET_STORED;
                        else if (!strcmp(optarg, "report"))
                                report_offsets = 1;
			else
				start_offset = strtoll(optarg, NULL, 10);
			break;
		case 'e':
			exit_eof = 1;
			break;
		case 'd':
			debug = optarg;
			break;
		case 'q':
			quiet = 1;
			break;
		case 'A':
			output = OUTPUT_RAW;
			break;
		case 'X':
		{
			char *name, *val;
			rd_kafka_conf_res_t res;

			if (!strcmp(optarg, "list") ||
			    !strcmp(optarg, "help")) {
				rd_kafka_conf_properties_show(stdout);
				exit(0);
			}

			if (!strcmp(optarg, "dump")) {
				do_conf_dump = 1;
				continue;
			}

			name = optarg;
			if (!(val = strchr(name, '='))) {
				fprintf(stderr, "%% Expected "
					"-X property=value, not %s\n", name);
				exit(1);
			}

			*val = '\0';
			val++;

			res = RD_KAFKA_CONF_UNKNOWN;
			/* Try "topic." prefixed properties on topic
			 * conf first, and then fall through to global if
			 * it didnt match a topic configuration property. */
			if (!strncmp(name, "topic.", strlen("topic.")))
				res = rd_kafka_topic_conf_set(topic_conf,
							      name+
							      strlen("topic."),
							      val,
							      errstr,
							      sizeof(errstr));

			if (res == RD_KAFKA_CONF_UNKNOWN)
				res = rd_kafka_conf_set(conf, name, val,
							errstr, sizeof(errstr));

			if (res != RD_KAFKA_CONF_OK) {
				fprintf(stderr, "%% %s\n", errstr);
				exit(1);
			}
		}
		break;

		default:
			goto usage;
		}
	}


	if (do_conf_dump) {
		const char **arr;
		size_t cnt;
		int pass;

		for (pass = 0 ; pass < 2 ; pass++) {
			int i;

			if (pass == 0) {
				arr = rd_kafka_conf_dump(conf, &cnt);
				printf("# Global config\n");
			} else {
				printf("# Topic config\n");
				arr = rd_kafka_topic_conf_dump(topic_conf,
							       &cnt);
			}

			for (i = 0 ; i < cnt ; i += 2)
				printf("%s = %s\n",
				       arr[i], arr[i+1]);

			printf("\n");

			rd_kafka_conf_dump_free(arr, cnt);
		}

		exit(0);
	}


	if (optind != argc || (mode != 'L' && !topic)) {
	usage:
		fprintf(stderr,
			"Usage: %s -C|-P|-L -t <topic> "
			"[-p <partition>] [-b <host1:port1,host2:port2,..>]\n"
			"\n"
			"librdkafka version %s (0x%08x)\n"
			"\n"
			" Options:\n"
			"  -C | -P         Consumer or Producer mode\n"
                        "  -L              Metadata list mode\n"
			"  -t <topic>      Topic to fetch / produce\n"
			"  -p <num>        Partition (random partitioner)\n"
			"  -b <brokers>    Broker address (localhost:9092)\n"
			"  -z <codec>      Enable compression:\n"
			"                  none|gzip|snappy\n"
			"  -o <offset>     Start offset (consumer)\n"
                        "  -o report       Report message offsets (producer)\n"
			"  -e              Exit consumer when last message\n"
			"                  in partition has been received.\n"
			"  -d [facs..]     Enable debugging contexts:\n"
			"  -q              Be quiet\n"
			"  -A              Raw payload output (consumer)\n"
			"                  %s\n"
			"  -X <prop=name> Set arbitrary librdkafka "
			"configuration property\n"
			"               Properties prefixed with \"topic.\" "
			"will be set on topic object.\n"
			"               Use '-X list' to see the full list\n"
			"               of supported properties.\n"
			"\n"
			" In Consumer mode:\n"
			"  writes fetched messages to stdout\n"
			" In Producer mode:\n"
			"  reads messages from stdin and sends to broker\n"
                        " In List mode:\n"
                        "  queries broker for metadata information, "
                        "topic is optional.\n"
			"\n"
			"\n"
			"\n",
			argv[0],
			rd_kafka_version_str(), rd_kafka_version(),
			RD_KAFKA_DEBUG_CONTEXTS);
		exit(1);
	}


	signal(SIGINT, stop);
	signal(SIGUSR1, sig_usr1);

	if (debug &&
	    rd_kafka_conf_set(conf, "debug", debug, errstr, sizeof(errstr)) !=
	    RD_KAFKA_CONF_OK) {
		fprintf(stderr, "%% Debug configuration failed: %s: %s\n",
			errstr, debug);
		exit(1);
	}

	if (mode == 'P') {
		/*
		 * Producer
		 */
		char buf[2048];
		int sendcnt = 0;

		/* Set up a message delivery report callback.
		 * It will be called once for each message, either on successful
		 * delivery to broker, or upon failure to deliver to broker. */

                /* If offset reporting (-o report) is enabled, use the
                 * richer dr_msg_cb instead. */
                if (report_offsets) {
                        rd_kafka_topic_conf_set(topic_conf,
                                                "produce.offset.report",
                                                "true", errstr, sizeof(errstr));
                        rd_kafka_conf_set_dr_msg_cb(conf, msg_delivered2);
                } else
                        rd_kafka_conf_set_dr_cb(conf, msg_delivered);

		/* Create Kafka handle */
		if (!(rk = rd_kafka_new(RD_KAFKA_PRODUCER, conf,
					errstr, sizeof(errstr)))) {
			fprintf(stderr,
				"%% Failed to create new producer: %s\n",
				errstr);
			exit(1);
		}

		/* Set logger */
		rd_kafka_set_logger(rk, logger);
		rd_kafka_set_log_level(rk, LOG_DEBUG);

		/* Add brokers */
		if (rd_kafka_brokers_add(rk, brokers) == 0) {
			fprintf(stderr, "%% No valid brokers specified\n");
			exit(1);
		}

		/* Create topic */
		rkt = rd_kafka_topic_new(rk, topic, topic_conf);

		if (!quiet)
			fprintf(stderr,
				"%% Type stuff and hit enter to send\n");

		while (run && fgets(buf, sizeof(buf), stdin)) {
			size_t len = strlen(buf);
			if (buf[len-1] == '\n')
				buf[--len] = '\0';

			/* Send/Produce message. */
			if (rd_kafka_produce(rkt, partition,
					     RD_KAFKA_MSG_F_COPY,
					     /* Payload and length */
					     buf, len,
					     /* Optional key and its length */
					     NULL, 0,
					     /* Message opaque, provided in
					      * delivery report callback as
					      * msg_opaque. */
					     NULL) == -1) {
				fprintf(stderr,
					"%% Failed to produce to topic %s "
					"partition %i: %s\n",
					rd_kafka_topic_name(rkt), partition,
					rd_kafka_err2str(
						rd_kafka_errno2err(errno)));
				/* Poll to handle delivery reports */
				rd_kafka_poll(rk, 0);
				continue;
			}

			if (!quiet)
				fprintf(stderr, "%% Sent %zd bytes to topic "
					"%s partition %i\n",
				len, rd_kafka_topic_name(rkt), partition);
			sendcnt++;
			/* Poll to handle delivery reports */
			rd_kafka_poll(rk, 0);
		}

		/* Poll to handle delivery reports */
		rd_kafka_poll(rk, 0);

		/* Wait for messages to be delivered */
		while (run && rd_kafka_outq_len(rk) > 0)
			rd_kafka_poll(rk, 100);

		/* Destroy the handle */
		rd_kafka_destroy(rk);

	} else if (mode == 'C') {
		/*
		 * Consumer
		 */

		/* Create Kafka handle */
		if (!(rk = rd_kafka_new(RD_KAFKA_CONSUMER, conf,
					errstr, sizeof(errstr)))) {
			fprintf(stderr,
				"%% Failed to create new consumer: %s\n",
				errstr);
			exit(1);
		}

		/* Set logger */
		rd_kafka_set_logger(rk, logger);
		rd_kafka_set_log_level(rk, LOG_DEBUG);

		/* Add brokers */
		if (rd_kafka_brokers_add(rk, brokers) == 0) {
			fprintf(stderr, "%% No valid brokers specified\n");
			exit(1);
		}

		/* Create topic */
		rkt = rd_kafka_topic_new(rk, topic, topic_conf);

		/* Start consuming */
		if (rd_kafka_consume_start(rkt, partition, start_offset) == -1){
			fprintf(stderr, "%% Failed to start consuming: %s\n",
				rd_kafka_err2str(rd_kafka_errno2err(errno)));
			exit(1);
		}

		while (run) {
			rd_kafka_message_t *rkmessage;

			/* Consume single message.
			 * See rdkafka_performance.c for high speed
			 * consuming of messages. */
			rkmessage = rd_kafka_consume(rkt, partition, 1000);
			if (!rkmessage) /* timeout */
				continue;

			msg_consume(rkmessage, NULL);

			/* Return message to rdkafka */
			rd_kafka_message_destroy(rkmessage);
		}

		/* Stop consuming */
		rd_kafka_consume_stop(rkt, partition);

		rd_kafka_topic_destroy(rkt);

		rd_kafka_destroy(rk);

        } else if (mode == 'L') {
                rd_kafka_resp_err_t err = RD_KAFKA_RESP_ERR_NO_ERROR;

		/* Create Kafka handle */
		if (!(rk = rd_kafka_new(RD_KAFKA_PRODUCER, conf,
					errstr, sizeof(errstr)))) {
			fprintf(stderr,
				"%% Failed to create new producer: %s\n",
				errstr);
			exit(1);
		}

		/* Set logger */
		rd_kafka_set_logger(rk, logger);
		rd_kafka_set_log_level(rk, LOG_DEBUG);

		/* Add brokers */
		if (rd_kafka_brokers_add(rk, brokers) == 0) {
			fprintf(stderr, "%% No valid brokers specified\n");
			exit(1);
		}

                /* Create topic */
                if (topic)
                        rkt = rd_kafka_topic_new(rk, topic, topic_conf);
                else
                        rkt = NULL;

                while (run) {
                        const struct rd_kafka_metadata *metadata;

                        /* Fetch metadata */
                        err = rd_kafka_metadata(rk, rkt ? 0 : 1, rkt,
                                                &metadata, 5000);
                        if (err != RD_KAFKA_RESP_ERR_NO_ERROR) {
                                fprintf(stderr,
                                        "%% Failed to acquire metadata: %s\n",
                                        rd_kafka_err2str(err));
                                run = 0;
                                break;
                        }

                        metadata_print(topic, metadata);

                        rd_kafka_metadata_destroy(metadata);
                        run = 0;
                }

		/* Destroy the handle */
		rd_kafka_destroy(rk);

                /* Exit right away, dont wait for background cleanup, we haven't
                 * done anything important anyway. */
                exit(err ? 2 : 0);
        }

	/* Let background threads clean up and terminate cleanly. */
	rd_kafka_wait_destroyed(2000);

	return 0;
}
Example #15
0
/**
 * @brief Test that Metadata requests are retried properly when
 *        timing out due to high broker rtt.
 */
static void do_test_low_socket_timeout (const char *topic) {
        rd_kafka_t *rk;
        rd_kafka_conf_t *conf;
        rd_kafka_topic_t *rkt;
        rd_kafka_resp_err_t err;
        const struct rd_kafka_metadata *md;
        int res;

        mtx_init(&ctrl.lock, mtx_plain);
        cnd_init(&ctrl.cnd);

        TEST_SAY("Test Metadata request retries on timeout\n");

        test_conf_init(&conf, NULL, 60);
        test_conf_set(conf, "socket.timeout.ms", "1000");
        test_conf_set(conf, "socket.max.fails", "12345");
        test_conf_set(conf, "retry.backoff.ms", "5000");
        /* Avoid api version requests (with their own timeout) to get in
         * the way of our test */
        test_conf_set(conf, "api.version.request", "false");
        test_socket_enable(conf);
        test_curr->connect_cb = connect_cb;
        test_curr->is_fatal_cb = is_fatal_cb;

        rk = test_create_handle(RD_KAFKA_PRODUCER, conf);
        rkt = test_create_producer_topic(rk, topic, NULL);

        TEST_SAY("Waiting for sockem connect..\n");
        mtx_lock(&ctrl.lock);
        while (!ctrl.skm)
                cnd_wait(&ctrl.cnd, &ctrl.lock);
        mtx_unlock(&ctrl.lock);

        TEST_SAY("Connected, fire off a undelayed metadata() to "
                 "make sure connection is up\n");

        err = rd_kafka_metadata(rk, 0, rkt, &md, tmout_multip(2000));
        TEST_ASSERT(!err, "metadata(undelayed) failed: %s",
                    rd_kafka_err2str(err));
        rd_kafka_metadata_destroy(md);

        if (thrd_create(&ctrl.thrd, ctrl_thrd_main, NULL) != thrd_success)
                TEST_FAIL("Failed to create sockem ctrl thread");

        set_delay(0, 3000); /* Takes effect immediately */

        /* After two retries, remove the delay, the third retry
         * should kick in and work. */
        set_delay(((1000 /*socket.timeout.ms*/ +
                    5000 /*retry.backoff.ms*/) * 2) - 2000, 0);

        TEST_SAY("Calling metadata() again which should succeed after "
                 "3 internal retries\n");
        /* Metadata should be returned after the third retry */
        err = rd_kafka_metadata(rk, 0, rkt, &md,
                                ((1000 /*socket.timeout.ms*/ +
                                  5000 /*retry.backoff.ms*/) * 2) + 5000);
        TEST_SAY("metadata() returned %s\n", rd_kafka_err2str(err));
        TEST_ASSERT(!err, "metadata(undelayed) failed: %s",
                    rd_kafka_err2str(err));
        rd_kafka_metadata_destroy(md);

        rd_kafka_topic_destroy(rkt);
        rd_kafka_destroy(rk);

        /* Join controller thread */
        mtx_lock(&ctrl.lock);
        ctrl.term = 1;
        mtx_unlock(&ctrl.lock);
        thrd_join(ctrl.thrd, &res);

        cnd_destroy(&ctrl.cnd);
        mtx_destroy(&ctrl.lock);
}
Example #16
0
/*
 * kafka_consume_main
 *
 * Main function for Kafka consumers running as background workers
 */
void
kafka_consume_main(Datum arg)
{
	char err_msg[512];
	rd_kafka_topic_conf_t *topic_conf;
	rd_kafka_t *kafka;
	rd_kafka_topic_t *topic;
	rd_kafka_message_t **messages;
	const struct rd_kafka_metadata *meta;
	struct rd_kafka_metadata_topic topic_meta;
	rd_kafka_resp_err_t err;
	bool found;
	Oid id = (Oid) arg;
	ListCell *lc;
	KafkaConsumerProc *proc = hash_search(consumer_procs, &id, HASH_FIND, &found);
	KafkaConsumer consumer;
	CopyStmt *copy;
	int valid_brokers = 0;
	int i;
	int my_partitions = 0;

	if (!found)
		elog(ERROR, "kafka consumer %d not found", id);

	pqsignal(SIGTERM, kafka_consume_main_sigterm);
#define BACKTRACE_SEGFAULTS
#ifdef BACKTRACE_SEGFAULTS
	pqsignal(SIGSEGV, debug_segfault);
#endif

	/* we're now ready to receive signals */
	BackgroundWorkerUnblockSignals();

	/* give this proc access to the database */
	BackgroundWorkerInitializeConnection(NameStr(proc->dbname), NULL);

	/* load saved consumer state */
	StartTransactionCommand();
	load_consumer_state(proc->consumer_id, &consumer);
	copy = get_copy_statement(&consumer);

	topic_conf = rd_kafka_topic_conf_new();
	kafka = rd_kafka_new(RD_KAFKA_CONSUMER, NULL, err_msg, sizeof(err_msg));
	rd_kafka_set_logger(kafka, logger);

	/*
	 * Add all brokers currently in pipeline_kafka_brokers
	 */
	if (consumer.brokers == NIL)
		elog(ERROR, "no valid brokers were found");

	foreach(lc, consumer.brokers)
		valid_brokers += rd_kafka_brokers_add(kafka, lfirst(lc));

	if (!valid_brokers)
		elog(ERROR, "no valid brokers were found");

	/*
	 * Set up our topic to read from
	 */
	topic = rd_kafka_topic_new(kafka, consumer.topic, topic_conf);
	err = rd_kafka_metadata(kafka, false, topic, &meta, CONSUMER_TIMEOUT);

	if (err != RD_KAFKA_RESP_ERR_NO_ERROR)
		elog(ERROR, "failed to acquire metadata: %s", rd_kafka_err2str(err));

	Assert(meta->topic_cnt == 1);
	topic_meta = meta->topics[0];

	load_consumer_offsets(&consumer, &topic_meta, proc->offset);
	CommitTransactionCommand();

	/*
	* Begin consuming all partitions that this process is responsible for
	*/
	for (i = 0; i < topic_meta.partition_cnt; i++)
	{
		int partition = topic_meta.partitions[i].id;

		Assert(partition <= consumer.num_partitions);
		if (partition % consumer.parallelism != proc->partition_group)
			continue;

		elog(LOG, "[kafka consumer] %s <- %s consuming partition %d from offset %ld",
				consumer.rel->relname, consumer.topic, partition, consumer.offsets[partition]);

		if (rd_kafka_consume_start(topic, partition, consumer.offsets[partition]) == -1)
			elog(ERROR, "failed to start consuming: %s", rd_kafka_err2str(rd_kafka_errno2err(errno)));

		my_partitions++;
	}

	/*
	* No point doing anything if we don't have any partitions assigned to us
	*/
	if (my_partitions == 0)
	{
		elog(LOG, "[kafka consumer] %s <- %s consumer %d doesn't have any partitions to read from",
				consumer.rel->relname, consumer.topic, MyProcPid);
		goto done;
	}

	messages = palloc0(sizeof(rd_kafka_message_t) * consumer.batch_size);

	/*
	 * Consume messages until we are terminated
	 */
	while (!got_sigterm)
	{
		ssize_t num_consumed;
		int i;
		int messages_buffered = 0;
		int partition;
		StringInfoData buf;
		bool xact = false;

		for (partition = 0; partition < consumer.num_partitions; partition++)
		{
			if (partition % consumer.parallelism != proc->partition_group)
				continue;

			num_consumed = rd_kafka_consume_batch(topic, partition,
					CONSUMER_TIMEOUT, messages, consumer.batch_size);

			if (num_consumed <= 0)
				continue;

			if (!xact)
			{
				StartTransactionCommand();
				xact = true;
			}

			initStringInfo(&buf);
			for (i = 0; i < num_consumed; i++)
			{
				if (messages[i]->payload != NULL)
				{
					appendBinaryStringInfo(&buf, messages[i]->payload, messages[i]->len);
					if (buf.len > 0 && buf.data[buf.len - 1] != '\n')
						appendStringInfoChar(&buf, '\n');
					messages_buffered++;
				}
				consumer.offsets[partition] = messages[i]->offset;
				rd_kafka_message_destroy(messages[i]);
			}
		}

		if (!xact)
		{
			pg_usleep(1 * 1000);
			continue;
		}

		/* we don't want to die in the event of any errors */
		PG_TRY();
		{
			if (messages_buffered)
				execute_copy(copy, &buf);
		}
		PG_CATCH();
		{
			elog(LOG, "[kafka consumer] %s <- %s failed to process batch, dropped %d message%s:",
					consumer.rel->relname, consumer.topic, (int) num_consumed, (num_consumed == 1 ? "" : "s"));
			EmitErrorReport();
			FlushErrorState();

			AbortCurrentTransaction();
			xact = false;
		}
		PG_END_TRY();

		if (!xact)
			StartTransactionCommand();

		if (messages_buffered)
			save_consumer_state(&consumer, proc->partition_group);

		CommitTransactionCommand();
	}

done:

	hash_search(consumer_procs, &id, HASH_REMOVE, NULL);

	rd_kafka_topic_destroy(topic);
	rd_kafka_destroy(kafka);
	rd_kafka_wait_destroyed(CONSUMER_TIMEOUT);
}
Example #17
0
int main (int argc, char **argv) {
    int partition = 99; /* non-existent */
    int r;
    rd_kafka_t *rk;
    rd_kafka_topic_t *rkt;
    rd_kafka_conf_t *conf;
    rd_kafka_topic_conf_t *topic_conf;
    char errstr[512];
    char msg[128];
    int msgcnt = 10;
    int i;
    const struct rd_kafka_metadata *metadata;

    test_conf_init(&conf, &topic_conf, 10);

    /* Set delivery report callback */
    rd_kafka_conf_set_dr_cb(conf, dr_cb);

    /* Create kafka instance */
    rk = rd_kafka_new(RD_KAFKA_PRODUCER, conf,
                      errstr, sizeof(errstr));
    if (!rk)
        TEST_FAIL("Failed to create rdkafka instance: %s\n", errstr);

    TEST_SAY("Created    kafka instance %s\n", rd_kafka_name(rk));

    rkt = rd_kafka_topic_new(rk, test_mk_topic_name("generic", 0),
                             topic_conf);
    if (!rkt)
        TEST_FAIL("Failed to create topic: %s\n",
                  strerror(errno));

    /* Request metadata so that we know the cluster is up before producing
     * messages, otherwise erroneous partitions will not fail immediately.*/
    if ((r = rd_kafka_metadata(rk, 0, rkt, &metadata, 2000)) !=
            RD_KAFKA_RESP_ERR_NO_ERROR)
        TEST_FAIL("Failed to acquire metadata: %s\n",
                  rd_kafka_err2str(r));

    rd_kafka_metadata_destroy(metadata);

    /* Produce a message */
    for (i = 0 ; i < msgcnt ; i++) {
        int *msgidp = malloc(sizeof(*msgidp));
        *msgidp = i;
        snprintf(msg, sizeof(msg), "%s test message #%i", argv[0], i);
        r = rd_kafka_produce(rkt, partition, RD_KAFKA_MSG_F_COPY,
                             msg, strlen(msg), NULL, 0, msgidp);
        if (r == -1) {
            if (errno == ESRCH)
                TEST_SAY("Failed to produce message #%i: "
                         "unknown partition: good!\n", i);
            else
                TEST_FAIL("Failed to produce message #%i: %s\n",
                          i, strerror(errno));
        } else {
            if (i > 5)
                TEST_FAIL("Message #%i produced: "
                          "should've failed\n", i);
            msgs_wait |= (1 << i);
        }

        /* After half the messages: sleep to allow the metadata
         * to be fetched from broker and update the actual partition
         * count: this will make subsequent produce() calls fail
         * immediately. */
        if (i == 5)
            sleep(2);
    }

    /* Wait for messages to time out */
    while (rd_kafka_outq_len(rk) > 0)
        rd_kafka_poll(rk, 50);

    if (msgs_wait != 0)
        TEST_FAIL("Still waiting for messages: 0x%x\n", msgs_wait);

    /* Destroy topic */
    rd_kafka_topic_destroy(rkt);

    /* Destroy rdkafka instance */
    TEST_SAY("Destroying kafka instance %s\n", rd_kafka_name(rk));
    rd_kafka_destroy(rk);

    /* Wait for everything to be cleaned up since broker destroys are
     * handled in its own thread. */
    test_wait_exit(10);

    /* If we havent failed at this point then
     * there were no threads leaked */
    return 0;
}