Exemple #1
0
virtio_tx_local(struct virtio_net *dev, struct rte_mbuf *m)
{
	struct virtio_net_data_ll *dev_ll;
	struct ether_hdr *pkt_hdr;
	uint64_t ret = 0;

	pkt_hdr = rte_pktmbuf_mtod(m, struct ether_hdr *);

	/*get the used devices list*/
	dev_ll = ll_root_used;

	while (dev_ll != NULL) {
		if (likely(dev_ll->dev->ready == DEVICE_READY) && ether_addr_cmp(&(pkt_hdr->d_addr),
				          &dev_ll->dev->mac_address)) {

			/* Drop the packet if the TX packet is destined for the TX device. */
			if (dev_ll->dev->device_fh == dev->device_fh) {
				RTE_LOG(DEBUG, VHOST_DATA, "(%" PRIu64 ") TX: "
					"Source and destination MAC addresses are the same. "
					"Dropping packet.\n",
					dev_ll->dev->device_fh);
				return 0;
			}


			RTE_LOG(DEBUG, VHOST_DATA, "(%" PRIu64 ") TX: "
				"MAC address is local\n", dev_ll->dev->device_fh);

			if (dev_ll->dev->remove) {
				/*drop the packet if the device is marked for removal*/
				RTE_LOG(DEBUG, VHOST_DATA, "(%" PRIu64 ") "
					"Device is marked for removal\n",
					dev_ll->dev->device_fh);
			} else {
				/*send the packet to the local virtio device*/
				ret = virtio_dev_rx(dev_ll->dev, &m, 1);
				if (enable_stats) {
					rte_atomic64_add(&dev_statistics[dev_ll->dev->device_fh].rx_total, 1);
					rte_atomic64_add(&dev_statistics[dev_ll->dev->device_fh].rx, ret);
					dev_statistics[dev->device_fh].tx_total++;
					dev_statistics[dev->device_fh].tx += ret;
				}
			}

			return 0;
		}
		dev_ll = dev_ll->next;
	}

	return -1;
}
Exemple #2
0
/*
 * This function registers mac along with a
 * vlan tag to a VMDQ.
 */
static int
link_vmdq(struct virtio_net *dev)
{
	int ret;
	struct virtio_net_data_ll *dev_ll;

	dev_ll = ll_root_used;

	while (dev_ll != NULL) {
		if ((dev != dev_ll->dev) && ether_addr_cmp(&dev->mac_address, &dev_ll->dev->mac_address)) {
			RTE_LOG(INFO, VHOST_DATA, "(%"PRIu64") WARNING: This device is using an existing MAC address and has not been registered.\n", dev->device_fh);
			return -1;
		}
		dev_ll = dev_ll->next;
	}

	/* vlan_tag currently uses the device_id. */
	dev->vlan_tag = vlan_tags[dev->device_fh];
	dev->vmdq_rx_q = dev->device_fh * (num_queues/num_devices);

	/* Print out VMDQ registration info. */
	RTE_LOG(INFO, VHOST_DATA, "(%"PRIu64") MAC_ADDRESS %02x:%02x:%02x:%02x:%02x:%02x and VLAN_TAG %d registered\n",
		dev->device_fh,
		dev->mac_address.addr_bytes[0], dev->mac_address.addr_bytes[1],
		dev->mac_address.addr_bytes[2], dev->mac_address.addr_bytes[3],
		dev->mac_address.addr_bytes[4], dev->mac_address.addr_bytes[5],
		dev->vlan_tag);

	/* Register the MAC address. */
	ret = rte_eth_dev_mac_addr_add(ports[0], &dev->mac_address, (uint32_t)dev->device_fh);
 	if (ret) {
		RTE_LOG(ERR, VHOST_DATA, "(%"PRIu64") Failed to add device MAC address to VMDQ\n",
										dev->device_fh);
		return -1;
	}

	/* Enable stripping of the vlan tag as we handle routing. */
	rte_eth_dev_set_vlan_strip_on_queue(ports[0], dev->vmdq_rx_q, 1);

	rte_compiler_barrier();
	/* Set device as ready for RX. */
	dev->ready = DEVICE_READY;

	return 0;
}