mbuf: rename deprecated VLAN flags
[dpdk.git] / drivers / net / e1000 / igb_rxtx.c
index 1bb4d85..d25ea04 100644 (file)
@@ -122,7 +122,7 @@ struct igb_rx_queue {
        uint16_t            rx_free_thresh; /**< max free RX desc to hold. */
        uint16_t            queue_id;   /**< RX queue index. */
        uint16_t            reg_idx;    /**< RX queue register index. */
-       uint8_t             port_id;    /**< Device port identifier. */
+       uint16_t            port_id;    /**< Device port identifier. */
        uint8_t             pthresh;    /**< Prefetch threshold register. */
        uint8_t             hthresh;    /**< Host threshold register. */
        uint8_t             wthresh;    /**< Write-back threshold register. */
@@ -191,7 +191,7 @@ struct igb_tx_queue {
        /**< Index of first used TX descriptor. */
        uint16_t               queue_id; /**< TX queue index. */
        uint16_t               reg_idx;  /**< TX queue register index. */
-       uint8_t                port_id;  /**< Device port identifier. */
+       uint16_t               port_id;  /**< Device port identifier. */
        uint8_t                pthresh;  /**< Prefetch threshold register. */
        uint8_t                hthresh;  /**< Host threshold register. */
        uint8_t                wthresh;  /**< Write-back threshold register. */
@@ -785,7 +785,7 @@ rx_desc_status_to_pkt_flags(uint32_t rx_status)
 
        /* Check if VLAN present */
        pkt_flags = ((rx_status & E1000_RXD_STAT_VP) ?
-               PKT_RX_VLAN_PKT | PKT_RX_VLAN_STRIPPED : 0);
+               PKT_RX_VLAN | PKT_RX_VLAN_STRIPPED : 0);
 
 #if defined(RTE_LIBRTE_IEEE1588)
        if (rx_status & E1000_RXD_STAT_TMST)
@@ -946,7 +946,7 @@ eth_igb_recv_pkts(void *rx_queue, struct rte_mbuf **rx_pkts,
 
                rxm->hash.rss = rxd.wb.lower.hi_dword.rss;
                hlen_type_rss = rte_le_to_cpu_32(rxd.wb.lower.lo_dword.data);
-               /* Only valid if PKT_RX_VLAN_PKT set in pkt_flags */
+               /* Only valid if PKT_RX_VLAN set in pkt_flags */
                rxm->vlan_tci = rte_le_to_cpu_16(rxd.wb.upper.vlan);
 
                pkt_flags = rx_desc_hlen_type_rss_to_pkt_flags(rxq, hlen_type_rss);
@@ -1180,7 +1180,7 @@ eth_igb_recv_scattered_pkts(void *rx_queue, struct rte_mbuf **rx_pkts,
                first_seg->hash.rss = rxd.wb.lower.hi_dword.rss;
 
                /*
-                * The vlan_tci field is only valid when PKT_RX_VLAN_PKT is
+                * The vlan_tci field is only valid when PKT_RX_VLAN is
                 * set in the pkt_flags field.
                 */
                first_seg->vlan_tci = rte_le_to_cpu_16(rxd.wb.upper.vlan);
@@ -1283,6 +1283,132 @@ eth_igb_tx_queue_release(void *txq)
        igb_tx_queue_release(txq);
 }
 
+static int
+igb_tx_done_cleanup(struct igb_tx_queue *txq, uint32_t free_cnt)
+{
+       struct igb_tx_entry *sw_ring;
+       volatile union e1000_adv_tx_desc *txr;
+       uint16_t tx_first; /* First segment analyzed. */
+       uint16_t tx_id;    /* Current segment being processed. */
+       uint16_t tx_last;  /* Last segment in the current packet. */
+       uint16_t tx_next;  /* First segment of the next packet. */
+       int count;
+
+       if (txq != NULL) {
+               count = 0;
+               sw_ring = txq->sw_ring;
+               txr = txq->tx_ring;
+
+               /*
+                * tx_tail is the last sent packet on the sw_ring. Goto the end
+                * of that packet (the last segment in the packet chain) and
+                * then the next segment will be the start of the oldest segment
+                * in the sw_ring. This is the first packet that will be
+                * attempted to be freed.
+                */
+
+               /* Get last segment in most recently added packet. */
+               tx_first = sw_ring[txq->tx_tail].last_id;
+
+               /* Get the next segment, which is the oldest segment in ring. */
+               tx_first = sw_ring[tx_first].next_id;
+
+               /* Set the current index to the first. */
+               tx_id = tx_first;
+
+               /*
+                * Loop through each packet. For each packet, verify that an
+                * mbuf exists and that the last segment is free. If so, free
+                * it and move on.
+                */
+               while (1) {
+                       tx_last = sw_ring[tx_id].last_id;
+
+                       if (sw_ring[tx_last].mbuf) {
+                               if (txr[tx_last].wb.status &
+                                               E1000_TXD_STAT_DD) {
+                                       /*
+                                        * Increment the number of packets
+                                        * freed.
+                                        */
+                                       count++;
+
+                                       /* Get the start of the next packet. */
+                                       tx_next = sw_ring[tx_last].next_id;
+
+                                       /*
+                                        * Loop through all segments in a
+                                        * packet.
+                                        */
+                                       do {
+                                               rte_pktmbuf_free_seg(sw_ring[tx_id].mbuf);
+                                               sw_ring[tx_id].mbuf = NULL;
+                                               sw_ring[tx_id].last_id = tx_id;
+
+                                               /* Move to next segemnt. */
+                                               tx_id = sw_ring[tx_id].next_id;
+
+                                       } while (tx_id != tx_next);
+
+                                       if (unlikely(count == (int)free_cnt))
+                                               break;
+                               } else
+                                       /*
+                                        * mbuf still in use, nothing left to
+                                        * free.
+                                        */
+                                       break;
+                       } else {
+                               /*
+                                * There are multiple reasons to be here:
+                                * 1) All the packets on the ring have been
+                                *    freed - tx_id is equal to tx_first
+                                *    and some packets have been freed.
+                                *    - Done, exit
+                                * 2) Interfaces has not sent a rings worth of
+                                *    packets yet, so the segment after tail is
+                                *    still empty. Or a previous call to this
+                                *    function freed some of the segments but
+                                *    not all so there is a hole in the list.
+                                *    Hopefully this is a rare case.
+                                *    - Walk the list and find the next mbuf. If
+                                *      there isn't one, then done.
+                                */
+                               if (likely((tx_id == tx_first) && (count != 0)))
+                                       break;
+
+                               /*
+                                * Walk the list and find the next mbuf, if any.
+                                */
+                               do {
+                                       /* Move to next segemnt. */
+                                       tx_id = sw_ring[tx_id].next_id;
+
+                                       if (sw_ring[tx_id].mbuf)
+                                               break;
+
+                               } while (tx_id != tx_first);
+
+                               /*
+                                * Determine why previous loop bailed. If there
+                                * is not an mbuf, done.
+                                */
+                               if (sw_ring[tx_id].mbuf == NULL)
+                                       break;
+                       }
+               }
+       } else
+               count = -ENODEV;
+
+       return count;
+}
+
+int
+eth_igb_tx_done_cleanup(void *txq, uint32_t free_cnt)
+{
+       return igb_tx_done_cleanup(txq, free_cnt);
+}
+
 static void
 igb_reset_tx_queue_stat(struct igb_tx_queue *txq)
 {
@@ -1404,7 +1530,7 @@ eth_igb_tx_queue_setup(struct rte_eth_dev *dev,
        txq->port_id = dev->data->port_id;
 
        txq->tdt_reg_addr = E1000_PCI_REG_ADDR(hw, E1000_TDT(txq->reg_idx));
-       txq->tx_ring_phys_addr = rte_mem_phy2mch(tz->memseg_id, tz->phys_addr);
+       txq->tx_ring_phys_addr = tz->phys_addr;
 
        txq->tx_ring = (union e1000_adv_tx_desc *) tz->addr;
        /* Allocate software ring */
@@ -1541,7 +1667,7 @@ eth_igb_rx_queue_setup(struct rte_eth_dev *dev,
        }
        rxq->rdt_reg_addr = E1000_PCI_REG_ADDR(hw, E1000_RDT(rxq->reg_idx));
        rxq->rdh_reg_addr = E1000_PCI_REG_ADDR(hw, E1000_RDH(rxq->reg_idx));
-       rxq->rx_ring_phys_addr = rte_mem_phy2mch(rz->memseg_id, rz->phys_addr);
+       rxq->rx_ring_phys_addr = rz->phys_addr;
        rxq->rx_ring = (union e1000_adv_rx_desc *) rz->addr;
 
        /* Allocate software ring. */
@@ -1601,6 +1727,51 @@ eth_igb_rx_descriptor_done(void *rx_queue, uint16_t offset)
        return !!(rxdp->wb.upper.status_error & E1000_RXD_STAT_DD);
 }
 
+int
+eth_igb_rx_descriptor_status(void *rx_queue, uint16_t offset)
+{
+       struct igb_rx_queue *rxq = rx_queue;
+       volatile uint32_t *status;
+       uint32_t desc;
+
+       if (unlikely(offset >= rxq->nb_rx_desc))
+               return -EINVAL;
+
+       if (offset >= rxq->nb_rx_desc - rxq->nb_rx_hold)
+               return RTE_ETH_RX_DESC_UNAVAIL;
+
+       desc = rxq->rx_tail + offset;
+       if (desc >= rxq->nb_rx_desc)
+               desc -= rxq->nb_rx_desc;
+
+       status = &rxq->rx_ring[desc].wb.upper.status_error;
+       if (*status & rte_cpu_to_le_32(E1000_RXD_STAT_DD))
+               return RTE_ETH_RX_DESC_DONE;
+
+       return RTE_ETH_RX_DESC_AVAIL;
+}
+
+int
+eth_igb_tx_descriptor_status(void *tx_queue, uint16_t offset)
+{
+       struct igb_tx_queue *txq = tx_queue;
+       volatile uint32_t *status;
+       uint32_t desc;
+
+       if (unlikely(offset >= txq->nb_tx_desc))
+               return -EINVAL;
+
+       desc = txq->tx_tail + offset;
+       if (desc >= txq->nb_tx_desc)
+               desc -= txq->nb_tx_desc;
+
+       status = &txq->tx_ring[desc].wb.status;
+       if (*status & rte_cpu_to_le_32(E1000_TXD_STAT_DD))
+               return RTE_ETH_TX_DESC_DONE;
+
+       return RTE_ETH_TX_DESC_FULL;
+}
+
 void
 igb_dev_clear_queues(struct rte_eth_dev *dev)
 {
@@ -2231,9 +2402,11 @@ eth_igb_rx_init(struct rte_eth_dev *dev)
 
        /* Enable both L3/L4 rx checksum offload */
        if (dev->data->dev_conf.rxmode.hw_ip_checksum)
-               rxcsum |= (E1000_RXCSUM_IPOFL  | E1000_RXCSUM_TUOFL);
+               rxcsum |= (E1000_RXCSUM_IPOFL | E1000_RXCSUM_TUOFL |
+                               E1000_RXCSUM_CRCOFL);
        else
-               rxcsum &= ~(E1000_RXCSUM_IPOFL | E1000_RXCSUM_TUOFL);
+               rxcsum &= ~(E1000_RXCSUM_IPOFL | E1000_RXCSUM_TUOFL |
+                               E1000_RXCSUM_CRCOFL);
        E1000_WRITE_REG(hw, E1000_RXCSUM, rxcsum);
 
        /* Setup the Receive Control Register. */